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Growth factor induced signaling cascades are key regulatory elements in tissue development, maintenance and regeneration. Perturbations of these cascades have severe consequences, leading to developmental disorders and neoplastic diseases. As a major function in signal transduction, activating mutations in RAF family kinases are the cause of human tumorigenesis, where B-RAF V600E has been identified as the prevalent mutant. In order to address the oncogenic function of B-RAF V600E, we have generated transgenic mice expressing the activated oncogene specifically in lung alveolar epithelial type II cells. Constitutive expression of B-RAF V600E caused abnormalities in alveolar epithelium formation that led to airspace enlargements. These lung lesions showed signs of tissue remodeling and were often associated with chronic inflammation and low incidence of lung tumors. The inflammatory cell infiltration did not precede the formation of the lung lesions but was rather accompanied with late tumor development. These data support a model where the continuous regenerative process initiated by oncogenic B-RAF-driven alveolar disruption provides a tumor-promoting environment associated with chronic inflammation.
In the present work, the objective has been to analyse the compatibility of plant and human transcriptional machinery. The experiments revealed that nuclear import and export are conserved among plants and mammals. Further it has been shown that transactivation of a human promoter occurs by human transcription factor NF-\(\kappa\) B in plant cells, demonstrating that the transcriptional machinery is highly conserved in both kingdoms. Functionality was also seen for regulatory elements of NF-\(\kappa\) B such as its inhibitor I\(\kappa\)B isoform \(\alpha\) that negatively regulated the transactivation activity of the p50/RelA heterodimer by interaction with NF-\(\kappa\)B in plant cells. Nuclear export of RelA could be demonstrated by FRAP-measurements so that RelA shows nucleo-cytoplasmic shuttling as reported for RelA in mammalian cells. The data reveals the high level of compatibility of human transcriptional elements with the plant transcriptional machinery. Thus, Arabidopsis thaliana mesophyll protoplasts might provide a new heterologous expression system for the investigation of the human NF-\(\kappa\)B signaling pathways. The system successfully enabled the controlled manipulation of NF-\(\kappa\)B activity. We suggest the plant protoplast system as a tool for reconstitution and analyses of mammalian pathways and for direct observation of responses to e. g. pharmaceuticals. The major advantage of the system is the absence of interference with endogenous factors that affect and crosstalk with the pathway.
Background: Clearance of apoptotic neutrophils in the lung is an essential process to limit inflammation, since they could become a pro-inflammatory stimulus themselves. The clearance is partially mediated by alveolar macrophages, which phagocytose these apoptotic cells. The phagocytosis of apoptotic immune cells by monocytes in vitro has been shown to be augmented by several constituents of pulmonary surfactant, e. g. phospholipids and hydrophobic surfactant proteins. In this study, we assessed the influence of exogenous poractant alfa (Curosurf (R)) instillation on the in vivo phagocytosis of apoptotic neutrophils by alveolar macrophages.
Methods: Poractant alfa (200 mg/kg) was instilled intratracheally in the lungs of three months old adult male C57/Black 6 mice, followed by apoptotic neutrophil instillation. Bronchoalveloar lavage was performed and alveolar macrophages and neutrophils were counted. Phagocytosis of apoptotic neutrophils was quantified by determining the number of apoptotic neutrophils per alveolar macrophages.
Results: Exogenous surfactant increased the number of alveolar macrophages engulfing apoptotic neutrophils 2.6 fold. The phagocytosis of apoptotic neutrophils was increased in the presence of exogenous surfactant by a 4.7 fold increase in phagocytosed apoptotic neutrophils per alveolar macrophage.
Conclusions: We conclude that the anti-inflammatory properties of surfactant therapy may be mediated in part by increased numbers of alveolar macrophages and increased phagocytosis of apoptotic neutrophils by alveolar macrophages.
Der Schutz vor der Einwanderung von Immunzellen ist einerseits unter physiologischen Bedingungen wichtig für die Integrität immunprivilegierter Organe, andererseits aber auch (mit)entscheidend für die Pathogenese maligner Tumoren. Vor diesem Hintergrund wurde LEEP-CAM (Lymphocyte Endothelial EPithelial-Cell Adhesion Molecule) untersucht, ein Adhäsionsmolekül, welches in der Epidermis und den dermalen Blutgefäßen in normaler Haut konstitutiv exprimiert wird. Durch immunhistochemische Untersuchungen wurde im ersten Teil der Arbeit gezeigt, dass LEEP-CAM in Basalzellkarzinomen, Plattenepithelkarzinomen und Keratoakanthomen der Haut deutlich vermindert oder gar nicht exprimiert wird. Die verminderte Expression war mit fehlender Infiltration von T-Lymphozyten in das Tumorgewebe assoziiert, was insbesondere durch zwei hinsichtlich ihrer LEEP-CAM-Expression unterschiedenen Populationen von Keratoakanthomen nahe gelegt wurde. Die Hypothese, dass LEEP-CAM in die epidermale Rekrutierung aktivierter T-Zellen involviert ist, wurde durch funktionelle Stamper-Woodruff-Experimente (Adhäsion aktivierter T-Lymphozyten an Gewebe-Gefrierschnitte) mit Basalzellkarzinomen und psoriatischer Haut gestützt. Durch metabolische Markierung mit 35(S)-Methionin und anschließende Radioimmunpräzipitation sowie durch durchflusszytometrische Untersuchungen an kultivierten Zellen wurde gezeigt, dass LEEPCAM in transformierten Keratinozyten im Vergleich zu normalen Keratinozyten deutlich vermindert synthetisiert und exprimiert wird. In zwei komplementären murinen Karzinogenese-Modellen wurde die Assoziation der verminderten LEEP-CAM-Expression mit Entdifferenzierung und invasivem Wachstum der Tumorzellen untermauert. Insgesamt kann experimentelle Evidenz für die Hypothese, dass die Herabregulation der LEEP-CAM-Expression ein (Teil)-Mechanismus ist, durch welchen sich invasiv wachsende Tumoren den Angriffen des Immunsystems entziehen können, präsentiert werden. Im Weiteren wurde die Expression und Funktion von LEEPCAM im Keimepithel des Hodens (als ein Beispiel für ein immunprivilegiertes Gewebe) untersucht. Durch immunhistochemische Untersuchungen wurde die konstitutive Expression von LEEP-CAM in den Sertoli-Zellen des Keimepithels nachgewiesen. Mittels Immun-Elektronenmikroskopie wurde dann die Lokalisation an desmosomalen Strukturen sowie entlang der Zellmembran gezeigt. Im Hinblick auf die Funktion von LEEP-CAM wurde in modifizierten Stamper-Woodruff-Experimenten erstmals gezeigt, dass aktivierte T-Lymphozyten an das Keimepithel des Hodens binden können und dass diese Adhäsion durch LEEP-CAM-gerichtete Antikörper inhibiert werden kann. Damit ist LEEP-CAM das erste Molekül, für welches direkte experimentelle Evidenz eine mögliche Rolle bei der testikulären Lymphozyten-Rekrutierung belegt. Dies könnte Relevanz für die Pathogenese von Orchitiden, den häufigsten Ursachen männlicher Infertilität, haben.
Aims: Although mortality rate is very high, diagnosis of acute myocarditis remains challenging with conventional tests. We aimed to elucidate the potential role of longitudinal 2-Deoxy-2-\(^{18}\)F-fluoro-D-glucose (\(^{18}\)F-FDG) positron emission tomography (PET) inflammation monitoring in a rat model of experimental autoimmune myocarditis.
Methods and results: Autoimmune myocarditis was induced in Lewis rats by immunizing with porcine cardiac myosin emulsified in complete Freund’s adjuvant. Time course of disease was assessed by longitudinal \(^{18}\)F-FDG PET imaging. A correlative analysis between in- and ex vivo \(^{18}\)F-FDG signalling and macrophage infiltration using CD68 staining was conducted. Finally, immunohistochemistry analysis of the cell-adhesion markers CD34 and CD44 was performed at different disease stages determined by longitudinal \(^{18}\)F-FDG PET imaging. After immunization, myocarditis rats revealed a temporal increase in 18F-FDG uptake (peaked at week 3), which was followed by a rapid decline thereafter. Localization of CD68 positive cells was well correlated with in vivo \(^{18}\)F-FDG PET signalling (R\(^2\) = 0.92) as well as with ex vivo 18F-FDG autoradiography (R\(^2\) = 0.9, P < 0.001, respectively). CD44 positivity was primarily observed at tissue samples obtained at acute phase (i.e. at peak 18F-FDG uptake), while CD34-positive staining areas were predominantly identified in samples harvested at both sub-acute and chronic phases (i.e. at \(^{18}\)F-FDG decrease).
Conclusion: \(^{18}\)F-FDG PET imaging can provide non-invasive serial monitoring of cardiac inflammation in a rat model of acute myocarditis.
Aneurysmal subarachnoid hemorrhage (aSAH) remains a disease with high mortality and morbidity. Since treating vasospasm has not inevitably led to an improvement in outcome, the actual emphasis is on finding neuroprotective therapies in the early phase following aSAH to prevent secondary brain injury in the later phase of disease. Within the early phase, neuroinflammation, thromboinflammation, disturbances in brain metabolism and early neuroprotective therapies directed against delayed cerebral ischemia (DCI) came into focus. Herein, the role of neuroinflammation, thromboinflammation and metabolism in aSAH is depicted. Potential neuroprotective strategies regarding neuroinflammation target microglia activation, metalloproteases, autophagy and the pathway via Toll-like receptor 4 (TLR4), high mobility group box 1 (HMGB1), NF-κB and finally the release of cytokines like TNFα or IL-1. Following the link to thromboinflammation, potential neuroprotective therapies try to target microthrombus formation, platelets and platelet receptors as well as clot clearance and immune cell infiltration. Potential neuroprotective strategies regarding metabolism try to re-balance the mismatch of energy need and supply following aSAH, for example, in restoring fuel to the TCA cycle or bypassing distinct energy pathways. Overall, this review addresses current neuroprotective strategies in aSAH, hopefully leading to future translational therapy options to prevent secondary brain injury.
Aim
This study evaluated the oral health status of adult patients with hypophosphatasia (HPP).
Materials and Methods
Parameters of oral health assessment comprised decayed/missing/filled teeth (DMFT) index, probing pocket depth and clinical attachment level (CAL) as well as documentation of tooth loss and periodontal health status according to CCD/AAP criteria. Findings were compared with national reference data (DMS V survey) reporting oral health status in age‐related controls. Within‐group comparisons were made between the HPP patients harbouring one versus two alkaline phosphatase liver/bone/kidney type (ALPL) gene variants.
Results
Of 80 HPP patients (64 female) with a mean age of 46.4 years (range 24–78) and one (n = 55) or two (n = 18) variants (n = 7 lacking testing) within the ALPL gene, those with two variants displayed substantially higher tooth loss rate (14.0 ± 9.3) than those affected by only one ALPL variant (4.1 ± 5.4), who did not differ substantially from healthy DMS V controls. While DMFT score and severe periodontal diseases (PDs) of HPP patients with one variant only increased with progressing age, the two‐variant sub‐cohort age independently exhibited increased DMFT scores and a higher rate of severe PDs.
Conclusions
HPP patients affected by two variants of the ALPL gene exhibited a higher risk of periodontitis and tooth loss than the general population, while patients with one variant developed clinically relevant oral disease symptoms with progressing ageing.
Background
Oncolytic virotherapy of tumors is an up-coming, promising therapeutic modality of cancer therapy. Unfortunately, non-invasive techniques to evaluate the inflammatory host response to treatment are rare. Here, we evaluate \(^{19}\)F magnetic resonance imaging (MRI) which enables the non-invasive visualization of inflammatory processes in pathological conditions by the use of perfluorocarbon nanoemulsions (PFC) for monitoring of oncolytic virotherapy.
Methodology/Principal Findings
The Vaccinia virus strain GLV-1h68 was used as an oncolytic agent for the treatment of different tumor models. Systemic application of PFC emulsions followed by \(^1H\)/\(^{19}\)F MRI of mock-infected and GLV-1h68-infected tumor-bearing mice revealed a significant accumulation of the \(^{19}\)F signal in the tumor rim of virus-treated mice. Histological examination of tumors confirmed a similar spatial distribution of the \(^{19}\)F signal hot spots and \(CD68^+\)-macrophages. Thereby, the \(CD68^+\)-macrophages encapsulate the GFP-positive viral infection foci. In multiple tumor models, we specifically visualized early inflammatory cell recruitment in Vaccinia virus colonized tumors. Furthermore, we documented that the \(^{19}\)F signal correlated with the extent of viral spreading within tumors.
Conclusions/Significance
These results suggest \(^{19}\)F MRI as a non-invasive methodology to document the tumor-associated host immune response as well as the extent of intratumoral viral replication. Thus, \(^{19}\)F MRI represents a new platform to non-invasively investigate the role of the host immune response for therapeutic outcome of oncolytic virotherapy and individual patient response.
Background
Anemia is common and is associated with impaired clinical outcomes in diabetic chronic kidney disease (CKD). It may be explained by reduced erythropoietin (EPO) synthesis, but recent data suggest that EPO-resistance and diminished iron availability due to inflammation contribute significantly. In this cohort study, we evaluated the impact of hepcidin-25—the key hormone of iron-metabolism—on clinical outcomes in diabetic patients with CKD along with endogenous EPO levels.
Methods
249 diabetic patients with CKD of any stage, excluding end-stage renal disease (ESRD), were enrolled (2003–2005), if they were not on EPO-stimulating agent and iron therapy. Hepcidin-25 levels were measured by radioimmunoassay. The association of hepcidin-25 at baseline with clinical variables was investigated using linear regression models. All-cause mortality and a composite endpoint of CKD progression (ESRD or doubling of serum creatinine) were analyzed by Cox proportional hazards models.
Results
Patients (age 67 yrs, 53% male, GFR 51 ml/min, hemoglobin 131 g/L, EPO 13.5 U/L, hepcidin-25 62.0 ng/ml) were followed for a median time of 4.2 yrs. Forty-nine patients died (19.7%) and forty (16.1%) patients reached the composite endpoint. Elevated hepcidin levels were independently associated with higher ferritin-levels, lower EPO-levels and impaired kidney function (all p<0.05). Hepcidin was related to mortality, along with its interaction with EPO, older age, greater proteinuria and elevated CRP (all p<0.05). Hepcidin was also predictive for progression of CKD, aside from baseline GFR, proteinuria, low albumin- and hemoglobin-levels and a history of CVD (all p<0.05).
Conclusions
We found hepcidin-25 to be associated with EPO and impaired kidney function in diabetic CKD. Elevated hepcidin-25 and EPO-levels were independent predictors of mortality, while hepcidin-25 was also predictive for progression of CKD. Both hepcidin-25 and EPO may represent important prognostic factors of clinical outcome and have the potential to further define “high risk” populations in CKD.
The receptor EMMPRIN is involved in the development and progression of cardiovascular diseases and in the pathogenesis of myocardial infarction. There are several binding partners of EMMPRIN mediating the effects of EMMPRIN in cardiovascular diseases. EMMPRIN interaction with most binding partners leads to disease progression by mediating cytokine or chemokine release, the activation of platelets and monocytes, as well as the formation of monocyte-platelet aggregates (MPAs). EMMPRIN is also involved in atherosclerosis by mediating the infiltration of pro-inflammatory cells. There is also evidence that EMMPRIN controls energy metabolism of cells and that EMMPRIN binding partners modulate intracellular glycosylation and trafficking of EMMPRIN towards the cell membrane. In this review, we systematically discuss these multifaceted roles of EMMPRIN and its interaction partners, such as Cyclophilins, in cardiovascular disease.
Zelluläre Regulation und klinische Aspekte des monocyten-/macrophagenspezifischen Proteins CD163
(2005)
In der vorliegenden Arbeit wurde die zelluläre Regulation des monocyten-/ macrophagenspezifischen Oberflächenproteins CD163 untersucht und klinische Aspekte der löslichen Form des CD163 (sCD163) diskutiert. sCD163 wird in vivo durch einen inflammatorischen Reiz von der Zelloberfläche abgespalten. Bislang waren jedoch noch keine Mediatoren charakterisiert worden, die immer unter Entzündungsbedingungen vorhanden sind. In den eigenen Untersuchungen des Shedding von CD163 konnten für die Generierung des sCD163 neue endogene Aktivatoren identifiziert werden. Sowohl reaktive Sauerstoffspezies, wie Wasserstoffperoxid oder Stickstoffmonoxid, als auch das Produkt von endogenen Oxidationsreaktionen mit reaktiven Sauerstoffspezies 8-iso Prostaglandin F2a erwiesen sich als potente Aktivatoren des Shedding von CD163. Neben den bekannten physiologischen Funktionen des 8-iso Prostaglandin F2a konnte erstmals eine neue Funktion bei Entzündungen definiert werden. Dieser Effekt wurde spezifisch durch 8-iso Prostaglandin F2a hervorgerufen, da das isomere Prostaglandin F2a unter gleichen Bedingungen keinen Einfluss auf das Shedding von CD163 ausübte. Das Immunsuppressivum Cyclosporin A konnte ebenfalls als Induktor des Shedding von CD163 ermittelt werden. Damit konnte zusätzlich zur bekannten immunmodulatorischen Wirkung des Cyclosporin A eine weitere antiinflammatorische Wirkung über Monocyten/Macrophagen aufgezeigt werden. Durch Untersuchungen der Inhibierung des Shedding von CD163 konnten Gemeinsamkeiten bezüglich der in die sCD163-Generierung involvierten Mediatoren dargestellt werden. Obwohl die untersuchten Verbindungen wahrscheinlich über unterschiedliche Signalwege das Shedding von CD163 induzieren, waren die Anwesenheit von reaktiven Sauerstoffspezies und intrazellulärem Calcium und die Beteiligung einer TIMP-3-sensitiven Metalloproteinase an diesem Prozess essentiell. Bei einem Vergleich zwischen dem Shedding von CD163 und Tumor necrosis factor-a (TNF-a) ergaben sich Gemeinsamkeiten durch die Induktion des Shedding beider Verbindungen durch 8-iso Prostaglandin F2a und in sehr viel geringerem Maße durch Wasserstoffperoxid. Im Gegensatz dazu waren deutliche Unterschiede in dem Ausmaß der induzierten Stimulation des Shedding durch Stickstoffmonoxid, Prostaglandin F2a und Cyclosporin A zu erkennen. Im Hinblick auf die entgegengesetzten Wirkungen von sCD163 als antiinflammatorisch wirkende Verbindung und TNF-a als proinflammatorisches Cytokin, konnte dargestellt werden, dass die Freisetzung durch unterschiedliche Aktivatoren erfolgt. Nach Bestimmung der Konzentrationen von sCD163 und 8-iso PGF2a in bronchoalveolärer Lavage-Flüssigkeit von Patienten mit Cystischer Fibrose konnten keine abschließende Aussagen über die Eignung beider Parameter als biologische Marker für chronische Entzündungen der Lunge bei diesen Patienten getroffen werden. Weiterführend zu der Kenntnis, dass sCD163 die antiinflammatorische Wirkung über eine Interaktion des Proteins mit humanen T-Lymphocyten und nachfolgender Hemmung der Proliferation dieser Zellen ausübt, wurde diese Wechselwirkung genauer untersucht. In quantitativen Bestimmungen des sCD163 in isolierten T-Lymphocyten verschiedener Spender konnte erstmals gezeigt werden, dass sCD163 zu einem Teil konstitutiv in die T-Lymphocyten aufgenommen wird und dass diese Aufnahme durch proinflammatorische Aktivierung der T-Lymphocyten stark gesteigert werden kann. Durch fluoreszenzmikroskopische Aufnahmen unstimulierter T-Lymphocyten konnte die intrazelluläre Lokalisation des sCD163 visualisiert werden. Nach Aktivierung der Zellen mit einem proinflammatorischen Reiz fand innerhalb der Zellen eine Translokalisation des sCD163 aus dem cytoplasmatischen Bereich zur Zellmembran statt. Damit konnte erstmals gezeigt werden, dass abhängig vom Aktivierungsstatus der T-Lymphocyten eine Umverteilung des sCD163 innerhalb der Zellen erfolgt. Eine quantitative Bestimmung des sCD163 und seines Bindungspartners in T-Lymphocyten nichtmuskuläres Myosin Typ IIA gelang mittels eines neu entwickeltem ELISA, der spezifisch sCD163 und Myosin ausschließlich im Komplex erfasst. Damit konnte durch die in dieser Arbeit beschriebenen Untersuchungen ein grundlegender Beitrag zur Charakterisierung der Regulation der Proteinexpression und des Shedding von CD163 in humanen Monocyten sowie der Interaktion des sCD163 mit T-Lymphocyten geleistet werden.
Intracranial hemorrhage results in devastating forms of cerebral damage. Frequently, these results also present with cardiac dysfunction ranging from ECG changes to Takotsubo syndrome (TTS). This suggests that intracranial bleeding due to subarachnoid hemorrhage (SAH) disrupts the neuro–cardiac axis leading to neurogenic stress cardiomyopathy (NSC) of different degrees. Following this notion, SAH and secondary TTS could be directly linked, thus contributing to poor outcomes. We set out to test if blood circulation is the driver of the brain–heart axis by investigating serum samples of TTS patients. We present a novel in vitro model combining SAH and secondary TTS to mimic the effects of blood or serum, respectively, on blood–brain barrier (BBB) integrity using in vitro monolayers of an established murine model. We consistently demonstrated decreased monolayer integrity and confirmed reduced Claudin-5 and Occludin levels by RT-qPCR and Western blot and morphological reorganization of actin filaments in endothelial cells. Both tight junction proteins show a time-dependent reduction. Our findings highlight a faster and more prominent disintegration of BBB in the presence of TTS and support the importance of the bloodstream as a causal link between intracerebral bleeding and cardiac dysfunction. This may represent potential targets for future therapeutic inventions in SAH and TTS.
The aim is to evaluate the effect of modifying poly[(L-lactide)-co-(epsilon-caprolactone)] scaffolds (PLCL) with nanodiamonds (nDP) or with nDP+physisorbed BMP-2 (nDP+BMP-2) on in vivo host tissue response and degradation. The scaffolds are implanted subcutaneously in Balb/c mice and retrieved after 1, 8, and 27 weeks. Molecular weight analysis shows that modified scaffolds degrade faster than the unmodified. Gene analysis at week 1 shows highest expression of proinflammatory markers around nDP scaffolds; although the presence of inflammatory cells and foreign body giant cells is more prominent around the PLCL. Tissue regeneration markers are highly expressed in the nDP+BMP-2 scaffolds at week 8. A fibrous capsule is detectable by week 8, thinnest around nDP scaffolds and at week 27 thickest around PLCL scaffolds. mRNA levels of ALP, COL1 alpha 2, and ANGPT1 are signifi cantly upregulating in the nDP+BMP-2 scaffolds at week 1 with ectopic bone seen at week 8. Even when almost 90% of the scaffold is degraded at week 27, nDP are observable at implantation areas without adverse effects. In conclusion, modifying PLCL scaffolds with nDP does not aggravate the host response and physisorbed BMP-2 delivery attenuates infl ammation while lowering the dose of BMP-2 to a relatively safe and economical level.
Fabry disease (FD) is a rare life-threatening disorder caused by deficiency of the alpha-galactosidase A (GLA) enzyme with a characteristic pain phenotype. Impaired GLA production or function leads to the accumulation of the cell membrane compound globotriaosylceramide (Gb3) in the neurons of the dorsal root ganglia (DRG) of FD patients. Applying immunohistochemistry (IHC) and quantitative real-time polymerase chain reaction (qRT PCR) analysis on DRG tissue of the GLA knockout (KO) mouse model of FD, we address the question of how Gb3 accumulation may contribute to FD pain and focus on the immune system and pain-associated ion channel gene expression. We show a higher Gb3 load in the DRG of young (<6 months) (p < 0.01) and old (≥12 months) (p < 0.001) GLA KO mice compared to old wildtype (WT) littermates, and an overall suppressed immune response in the DRG of old GLA KO mice, represented by a reduced number of CD206\(^+\) macrophages (p < 0.01) and lower gene expression levels of the inflammation-associated targets interleukin(IL)1b (p < 0.05), IL10 (p < 0.001), glial fibrillary acidic protein (GFAP) (p < 0.05), and leucine rich alpha-2-glycoprotein 1 (LRG1) (p < 0.01) in the DRG of old GLA KO mice compared to old WT. Dysregulation of immune-related genes may be linked to lower gene expression levels of the pain-associated ion channels calcium-activated potassium channel 3.1 (KCa3.1) and transient receptor potential ankyrin 1 channel (TRPA1). Ion channel expression might further be disturbed by impaired sphingolipid recruitment mediated via the lipid raft marker flotillin-1 (FLOT1). This impairment is represented by an increased number of FLOT1\(^+\) DRG neurons with a membranous expression pattern in old GLA KO mice compared to young GLA KO, young WT, and old WT mice (p < 0.001 each). Further, we provide evidence for aberrant behavior of GLA KO mice, which might be linked to dysregulated ion channel gene expression levels and disturbed FLOT1 distribution patterns. Behavioral testing revealed mechanical hypersensitivity in young (p < 0.01) and old (p < 0.001) GLA KO mice compared to WT, heat hypersensitivity in young GLA KO mice (p < 0.001) compared to WT, age-dependent heat hyposensitivity in old GLA KO mice (p < 0.001) compared to young GLA KO mice, and cold hyposensitivity in young (p < 0.001) and old (p < 0.001) GLA KO mice compared to WT, which well reflects the clinical phenotype observed in FD patients.
Atherosclerotic lesions are populated by cells of the innate and adaptive immune system, including CD8\(^+\) T cells. The CD8\(^+\) T cell infiltrate has recently been characterized in mouse and human atherosclerosis and revealed activated, cytotoxic, and possibly dysfunctional and exhausted cell phenotypes. In mouse models of atherosclerosis, antibody-mediated depletion of CD8\(^+\) T cells ameliorates atherosclerosis. CD8\(^+\) T cells control monopoiesis and macrophage accumulation in early atherosclerosis. In addition, CD8\(^+\) T cells exert cytotoxic functions in atherosclerotic plaques and contribute to macrophage cell death and necrotic core formation. CD8\(^+\) T cell activation may be antigen-specific, and epitopes of atherosclerosis-relevant antigens may be targets of CD8\(^+\) T cells and their cytotoxic activity. CD8\(^+\) T cell functions are tightly controlled by costimulatory and coinhibitory immune checkpoints. Subsets of regulatory CD25\(^+\)CD8\(^+\) T cells with immunosuppressive functions can inhibit atherosclerosis. Importantly, local cytotoxic CD8\(^+\) T cell responses may trigger endothelial damage and plaque erosion in acute coronary syndromes. Understanding the complex role of CD8\(^+\) T cells in atherosclerosis may pave the way for defining novel treatment approaches in atherosclerosis. In this review article, we discuss these aspects, highlighting the emerging and critical role of CD8\(^+\) T cells in atherosclerosis.
The bidirectional influence of parenchymal cells and cells of the immune system, especially of antigen-presenting and CD8\(^+\) T cells, in situations of putative auto- immune pathogenicity and degeneration was the main topic of this thesis. In the first part, the influence of human muscle cells on antigen-presenting cells was investigated. In inflammatory myopathies prominent infiltrates of immune cells containing T cells and antigen-presenting cells like macrophages and dendritic cells are present. The hypothesis was that human myoblasts have an inhibiting influence on these antigen-presenting cells under homeostatic conditions. A dysfunction or impairment under inflammatory circumstances might contribute to the development of myopathic conditions. The surface analysis of dendritic cells cocultured with myoblasts showed that immature dendritic cells could be driven into a reversible semi- mature state with significantly elevated levels of CD80. These dendritic cells were additionally characterized by their inhibiting function on T-cell proliferation. It was also shown that the lysates of healthy myoblasts could strongly enhance the phagocytic ability of macrophages, which could help with muscle regeneration and which might be disturbed in myositis patients. The second part of this thesis was about the clonal specificity of CD8\(^+\) T cells in a mouse model with genetically induced over-expression of PLP in oligodendrocytes. Here, we could show that the cytotoxic T lymphocytes, which had previously been shown to be pathogenic, were clonally expanded in the CNS of the transgenic mice. The amino acid sequences of the corresponding receptor chains were not identical, yet showed some similarities, which could mean that these clones recognize similar antigens (or epitopes of the same antigen). The knockout of PD-1 in this setting allowed for an analysis of the importance of tissue immune regulation. It became evident that the absence of PD-1 induced a larger number of clonal expansions in the CNS, hinting towards a reduced threshold for clonal disturbance and activation in these T cells. The expansions were, however, not pathogenic by themselves. Only in the presence of tissue damage and an antigenic stimulus (in our case the overexpression of PLP), the PD-1 limitation exacerbated the immune pathogenicity. Therefore, only in the presence of a “tissue damage signal”, the dyshomeostasis of T cells lacking PD-1 achieved high pathogenetic relevance. Finally, we investigated the pathogenetic role of CD8 T cells in Rasmussen encephalitis, a rare and chronic neurological disease mainly affecting children. The analysis of the T-cell receptor repertoire in Rasmussen encephalitis patients in the peripheral CD4\(^+\) and CD8\(^+\) T-cell compartments as well as the brain revealed the involvement of T cells in the pathogenicity of this disease. Many clonal expansions in the brain matched CD8\(^+\) T-cell expansions in the periphery on the sequence level. These putatively pathogenic clones could be visualized by immunohistochemistry in the brain and were found in close proximity to astrocytes and neurons. Additionally, the expanded clones could be found in the periphery of patients for at least one year.
Inflammation and oxidative stress are known to be involved in the pathogenesis of chronic kidney disease in humans, and in chronic renal failure (CRF) in rats. The aim of this work was to study the role of inflammation and oxidative stress in adenine-induced CRF and the effect thereon of the purported nephroprotective agent gum arabic (GA). Rats were divided into four groups and treated for 4 weeks as follows: control, adenine in feed (0.75%, w/w), GA in drinking water (15%, w/v) and adenine+GA, as before. Urine, blood and kidneys were collected from the rats at the end of the treatment for analysis of conventional renal function tests (plasma creatinine and urea concentration). In addition, the concentrations of the pro-inflammatory cytokine TNF-a and the oxidative stress markers glutathione and superoxide dismutase, renal apoptosis, superoxide formation and DNA double strand break frequency, detected by immunohistochemistry for
c-H2AX, were measured. Adenine significantly increased the concentrations of urea and creatinine in plasma, significantly decreased the creatinine clearance and induced significant increases in the concentration of the measured inflammatory mediators.
Further, it caused oxidative stress and DNA damage. Treatment with GA significantly ameliorated these actions. The mechanism of the reported salutary effect of GA in adenine-induced CRF is associated with mitigation of the adenine-induced inflammation and generation of free radicals.
Mechanical thrombectomy is a novel treatment option for patients with acute ischemic stroke (AIS). Only a few studies have previously suggested strategies to categorize retrieved clots according to their histologic composition. However, these reports did not analyze potential biomarkers that are of importance in stroke-related inflammation. We therefore histopathologically investigated 37 intracerebral thrombi mechanically retrieved from patients with AIS, and focused on the composition of immune cells and platelets. We also conducted correlation analyses of distinctive morphologic patterns (erythrocytic, serpentine, layered, red, white, mixed appearance) with clinical parameters. Most T cells and monocytes were detected in erythrocytic and red clots, in which the distribution of these cells was random. In contrast, von Willebrand factor (vWF)-positive areas co-localized with regions of fibrin and collagen. While clots with huge amounts of vWF seem to be associated with a high National Institute of Health Stroke Scale score at admission, histologic findings could not predict the clinical outcome at discharge. In summary, we provide the first histologic description of mechanically retrieved intracerebral thrombi regarding biomarkers relevant for inflammation in ischemic stroke.
Fullerenols, water-soluble C60-fullerene derivatives, have been shown to exert neuroprotective effects in vitro and in vivo, most likely due to their capability to scavenge free radicals. However, little is known about the effects of fullerenols on the blood–brain barrier (BBB), especially on cerebral endothelial cells under inflammatory conditions. Here, we investigated whether the treatment of primary mouse brain microvascular endothelial cells with fullerenols impacts basal and inflammatory blood–brain barrier (BBB) properties in vitro. While fullerenols (1, 10, and 100 µg/mL) did not change transendothelial electrical resistance under basal and inflammatory conditions, 100 µg/mL of fullerenol significantly reduced erk1/2 activation and resulted in an activation of NFκB in an inflammatory milieu. Our findings suggest that fullerenols might counteract oxidative stress via the erk1/2 and NFκB pathways, and thus are able to protect microvascular endothelial cells under inflammatory conditions.
Breakdown of the blood-brain barrier (BBB) is an early hallmark of multiple sclerosis (MS), a progressive inflammatory disease of the central nervous system. Cell adhesion in the BBB is modulated by sphingosine-1-phosphate (S1P), a signaling protein, via S1P receptors (S1P\(_1\)). Fingolimod phosphate (FTY720-P) a functional S1P\(_1\) antagonist has been shown to improve the relapse rate in relapsing-remitting MS by preventing the egress of lymphocytes from lymph nodes. However, its role in modulating BBB permeabilityin particular, on the tight junction proteins occludin, claudin 5 and ZO-1has not been well elucidated to date. In the present study, FTY720-P did not change the transendothelial electrical resistance in a rat brain microvascular endothelial cell (RBMEC) culture exposed to inflammatory conditions and thus did not decrease endothelial barrier permeability. In contrast, occludin was reduced in RBMEC culture after adding FTY720-P. Additionally, FTY720-P did not alter the amount of endothelial matrix metalloproteinase (MMP)-9 and MMP-2 in RBMEC cultures. Taken together, our observations support the assumption that S1P\(_1\) plays a dual role in vascular permeability, depending on its ligand. Thus, S1P\(_1\) provides a mechanistic basis for FTY720-P-associated disruption of endothelial barrierssuch as the blood-retinal barrierwhich might result in macular edema.
Background: Despite pleiotropic immunomodulatory effects of apolipoprotein E (apoE) in vitro, its effects on the clinical course of experimental autoimmune encephalomyelitis (EAE) and multiple sclerosis (MS) are still controversial. As sex hormones modify immunomodulatory apoE functions, they may explain contentious findings. This study aimed to investigate sex-specific effects of apoE on disease course of EAE and MS.
Methods: MOG\(_{35-55}\) induced EAE in female and male apoE-deficient mice was assessed clinically and histopathologically. apoE expression was investigated by qPCR. The association of the MS severity score (MSSS) and APOE rs429358 and rs7412 was assessed across 3237 MS patients using linear regression analyses.
Results: EAE disease course was slightly attenuated in male apoE-deficient (apoE\(^{-/-}\)) mice compared to wildtype mice (cumulative median score: apoE\(^{-/-}\) = 2 [IQR 0.0-4.5]; wildtype = 4 [IQR 1.0-5.0]; n = 10 each group, p = 0.0002). In contrast, EAE was more severe in female apoE\(^{-/-}\) mice compared to wildtype mice (cumulative median score: apoE\(^{-/-}\) = 3 [IQR 2.0-4.5]; wildtype = 3 [IQR 0.0-4.0]; n = 10, p = 0.003). In wildtype animals, apoE expression during the chronic EAE phase was increased in both females and males (in comparison to naive animals; p < 0.001). However, in MS, we did not observe a significant association between MSSS and rs429358 or rs7412, neither in the overall analyses nor upon stratification for sex.
Conclusions: apoE exerts moderate sex-specific effects on EAE severity. However, the results in the apoE knock-out model are not comparable to effects of polymorphic variants in the human APOE gene, thus pinpointing the challenge of translating findings from the EAE model to the human disease.
Ziel dieser Arbeit ist, die Wertigkeit von Entzündungsparametern (CRP, BSG, Leukozyten und Temperatur) in der postoperativen Phase anhand einer retrospektiven Studie mit 531 Patienten nach Implantation von Knie- und Hüft-Totalendoprothesen zu beurteilen. Hierbei sollten zum einen die Auswirkungen von Vorerkrankungen (Asthma bronchiale, Rheumatoider Arthritis, Nikotinabusus, Gicht/Hyperurikämie, Z. n. Thrombosen) auf den postoperativen Verlauf der Entzündungsparameter und zum anderen postoperative Komplikationen (Thrombosen, bronchopulmonale Infekte, Harnwegsinfekte, Wundinfekte, Protheseninfekte) anhand der Entzündungsparameter erfasst werden. Die Auswertung erfolgte mittels SPSS für Windows durch den Mann-Whitney Test als nicht parametrischen Test für unabhängige Variablen. Im Durchschnitt stieg der CRP-Wert von 0,6 mg/dl präoperativ auf etwa 8,5 mg/dl um den 3. postoperativen Tag an und fiel dann durchschnittlich auf 1,4 mg/dl um den 14. postoperativen Tag ab. Die BSG-Werte stiegen von etwa 18 mm/h präoperativ auf 52 mm/h um den 3. postoperativen Tag an. Der höchste BSG-Wert (56 mm/h) wurde erst um den 7. postoperativen Tag erreicht. Danach fiel der BSG-Wert leicht ab auf durchschnittlich etwa 43 mm/h um den 14. postoperativen Tag. Die Temperaturkurve verlief ähnlich: Auch hier stieg die Temperatur rasch auf einen Höchstwert von 37,1°C um den 2. postoperativen Tag. Es folgte ein langsamer Abfall der Temperatur, bis hin zu Normwerten ab dem 10. postoperativen Tag. Die Leukozyten zeigten im Durchschnitt einen geradlinigen Verlauf mit durchschnittlichen Werten zwischen 7 und 8 G/l, allerdings bei einer großen Standartabweichung. Patienten mit Asthma bronchiale zeigten präoperativ signifikant erhöhte BSG und Leukozytenwerte. Patienten mit Gicht/Hyperurikämie fielen durch signifikant niedrigere Temperaturwerte am 6. und 12. postoperativen Tag sowie durch Trends zu niedrigeren Werten am 10. und 16. postoperativen Tag auf. Signifikant höhere Werte fanden sich bei der CRP-AUC-Kurve vom 7.-14. postoperativen Tag. Des Weiteren fanden sich Trends zu höheren Werten am 14. postoperativen Tag bei der BSG und am 3. postoperativen Tag bei den Leukozyten. Bei Patienten mit Z.n. Thrombose zeigte sich der postoperative BSG-Verlauf vom 3.-14. Tag signifikant erniedrigt, ebenso waren die postoperativen Temperaturwerte vom 15. und 16. Tag signifikant niedriger. Der einzig signifikante Unterschied zwischen Rauchern und Nichtrauchern fand sich in der präoperativen BSG, wo Raucher signifikant niedrigere Werte hatten. Des Weiteren zeigten sich Trends zu höheren Leukozytenwerten am 3. und 7. postoperativen Tag sowie Trends zu niedrigeren Temperaturen am 1., 2., 7., 8. und 14. postoperativen Tag. Patienten mit Rheumatoider Arthritis fielen durch signifikant erhöhte präoperative CRP- und BSG-Werte auf. Zusätzlich traten Trends zu höheren Werten am 14. postoperativen Tag für CRP, BSG und Leukozyten auf. Dem Trend zur Temperaturerhöhung am 2. postoperativen Tag folgten erneute Trends am 9. und 11. postoperativen Tag sowie signifikant höhere Temperaturen am 10. und 12. postoperativen Tag. Patienten, die einen Harnwegsinfekt erlitten, hatten signifikant erhöhte Werte am 14. postoperativen Tag für CRP und BSG. Auch die CRP-AUC-Kurve zeigte diesen Verlauf signifikant. Bei Patienten, die an einem bronchopulmonalem Infekt erkrankten, war der CRP-Wert des 3. postoperativen Tages signifikant erhöht. Dies ließ sich auch in der CRP-AUC-Kurve vom 0.-3. postoperativen Tag signifikant nachweisen. Darüber hinaus lag ein Trend am 3.-7. postoperativen Tag zu höheren Werten vor. Bei Patienten mit tiefer Beinvenenthrombose fiel eine signifikante Temperaturerhöhung am 7., 8. und 11. postoperativen Tag auf, sowie ein Trend am 9., 10. und 12. postoperativen Tag. Die CRP-Werte stiegen um den 14. postoperativen Tag signifikant an. Gleiches Verhalten zeigte die CRP-AUC-Kurve vom 7.-14. postoperativen Tag. Patienten mit Wundinfektionen fielen durch Trends zu niedrigeren Temperaturwerten am 4. und 5. postoperativen Tag auf. Außerdem stieg um den 7. postoperativen Tag die BSG trendwertig an. Die Leukozyten waren präoperativ signifikant erhöht. Dagegen war bei Patienten mit TEP-Infektion der CRP-Wert um den 14. postoperativen Tag signifikant erhöht. Die Temperaturwerte des 8. postoperativen Tages zeigten einen Trend zu niedrigeren Zahlen. Die Ergebnisse entsprechen in etwa denen anderer Studien. Insgesamt lässt sich eine Tendenz ablesen: BSG und Temperatur sind vor allem bei den erwähnten Vorerkrankungen erhöht, Leukozyten spielen kaum eine Rolle und die CRP-Bestimmung findet ihren Platz hauptsächlich in der Diagnostik von Komplikationen. Außerdem wird klar, dass kein Entzündungsparameter spezifisch für eine bestimmte Vorerkrankung oder Komplikation ist. Darüber hinaus sind nicht Einzelwerte, sondern viel mehr der Verlauf der Entzündungsparameter entscheidend.
TNF receptor type 2 (TNFR2) has gained attention as a costimulatory receptor for T cells and as critical factor for the development of regulatory T cells (Treg) and myeloid suppressor cells. Using the TNFR2-specific agonist TNCscTNF80, direct effects of TNFR2 activation on myeloid cells and T cells were investigated in mice. \(In\) \(vitro\), TNCscTNF80 induced T cell proliferation in a costimulatory fashion, and also supported \(in\) \(vitro\) expansion of Treg cells. In addition, activation of TNFR2 retarded differentiation of bone marrow-derived immature myeloid cells in culture and reduced their suppressor function. \(In\) \(vivo\) application of TNCscTNF80-induced mild myelopoiesis in naïve mice without affecting the immune cell composition. Already a single application expanded Treg cells and improved suppression of CD4 T cells in mice with chronic inflammation. By contrast, multiple applications of the TNFR2 agonist were required to expand Treg cells in naïve mice. Improved suppression of T cell proliferation depended on expression of TNFR2 by T cells in mice repeatedly treated with TNCscTNF80, without a major contribution of TNFR2 on myeloid cells. Thus, TNFR2 activation on T cells in naïve mice can lead to immune suppression \(in\) \(vivo\). These findings support the important role of TNFR2 for Treg cells in immune regulation.
Balanced hydroxyethylstarch (HES 130/0.4) impairs kidney function in-vivo without inflammation
(2015)
Volume therapy is a standard procedure in daily perioperative care, and there is an ongoing discussion about the benefits of colloid resuscitation with hydroxyethylstarch (HES). In sepsis HES should be avoided due to a higher risk for acute kidney injury (AKI). Results of the usage of HES in patients without sepsis are controversial. Therefore we conducted an animal study to evaluate the impact of 6% HES 130/0.4 on kidney integrity with sepsis or under healthy conditions Sepsis was induced by standardized Colon Ascendens Stent Peritonitis (sCASP). sCASP-group as well as control group (C) remained untreated for 24 h. After 18 h sCASP+HES group (sCASP+VOL) and control+HES (C+VOL) received 50 ml/KG balanced 6% HES (VOL) 130/0.4 over 6h. After 24h kidney function was measured via Inulin- and PAH-Clearance in re-anesthetized rats, and serum urea, creatinine (crea), cystatin C and Neutrophil gelatinase-associated lipocalin (NGAL) as well as histopathology were analysed. In vitro human proximal tubule cells (PTC) were cultured +/- lipopolysaccharid (LPS) and with 0.1–4.0% VOL. Cell viability was measured with XTT-, cell toxicity with LDH-test. sCASP induced severe septic AKI demonstrated divergent results regarding renal function by clearance or creatinine measure focusing on VOL. Soleley HES (C+VOL) deteriorated renal function without sCASP. Histopathology revealed significantly derangements in all HES groups compared to control. In vitro LPS did not worsen the HES induced reduction of cell viability in PTC cells. For the first time, we demonstrated, that application of 50 ml/KG 6% HES 130/0.4 over 6 hours induced AKI without inflammation in vivo. Severity of sCASP induced septic AKI might be no longer susceptible to the way of volume expansion
Inflammation is a central aspect of tumour biology and can contribute significantly to both the origination and progression of tumours. The NFκB pathway is one of the most important signal transduction pathways in inflammation and is, therefore, an excellent target for cancer therapy. In this work, we examined the influence of four NFκB inhibitors — Cortisol, MLN4924, QNZ and TPCA1 — on proliferation, inflammation and sensitisation to apoptosis mediated by the death ligand FasL in the HNSCC cell lines PCI1, PCI9, PCI13, PCI52 and SCC25 and in the human dermal keratinocyte cell line HaCaT. We found that the selection of the inhibitor is critical to ensure that cells do not respond by inducing counteracting activities in the context of cancer therapy, e.g., the extreme IL-8 induction mediated by MLN4924 or FasL resistance mediated by Cortisol. However, TPCA1 was qualified by this in vitro study as an excellent therapeutic mediator in HNSCC by four positive qualities: (1) proliferation was inhibited at low μM-range concentrations; (2) TNFα-induced IL-8 secretion was blocked; (3) HNSCC cells were sensitized to TNFα-induced cell death; and (4) FasL-mediated apoptosis was not disrupted.
Background
While all efforts have been undertaken to propagate the vaccination and develop remedies against SARS-CoV-2, no satisfactory management of this infection is available yet. Moreover, poor availability of any preventive and treatment measures of SARS-CoV-2 in economically disadvantageous communities aggravates the course of the pandemic. Here, we studied a new immunomodulatory phytotherapy (IP), an extract of blackberry, chamomile, garlic, cloves, and elderberry as a potential low-cost solution for these problems given the reported efficacy of herbal medicine during the previous SARS virus outbreak.
Methods
The key feature of SARS-CoV-2 infection, excessive inflammation, was studied in in vitro and in vivo assays under the application of the IP. First, changes in tumor-necrosis factor (TNF) and lnteurleukin-1 beta (IL-1β) concentrations were measured in a culture of human macrophages following the lipopolysaccharide (LPS) challenge and treatment with IP or prednisolone. Second, chronically IP-pre-treated CD-1 mice received an agonist of Toll-like receptors (TLR)-7/8 resiquimod and were examined for lung and spleen expression of pro-inflammatory cytokines and blood formula. Finally, chronically IP-pre-treated mice challenged with LPS injection were studied for “sickness” behavior. Additionally, the IP was analyzed using high-potency-liquid chromatography (HPLC)-high-resolution-mass-spectrometry (HRMS).
Results
LPS-induced in vitro release of TNF and IL-1β was reduced by both treatments. The IP-treated mice displayed blunted over-expression of SAA-2, ACE-2, CXCL1, and CXCL10 and decreased changes in blood formula in response to an injection with resiquimod. The IP-treated mice injected with LPS showed normalized locomotion, anxiety, and exploration behaviors but not abnormal forced swimming. Isoquercitrin, choline, leucine, chlorogenic acid, and other constituents were identified by HPLC-HRMS and likely underlie the IP immunomodulatory effects.
Conclusions
Herbal IP-therapy decreases inflammation and, partly, “sickness behavior,” suggesting its potency to combat SARS-CoV-2 infection first of all via its preventive effects.
Complement 1q/tumor necrosis factor-related proteins (CTRPs): structure, receptors and signaling
(2023)
Adiponectin and the other 15 members of the complement 1q (C1q)/tumor necrosis factor (TNF)-related protein (CTRP) family are secreted proteins composed of an N-terminal variable domain followed by a stalk region and a characteristic C-terminal trimerizing globular C1q (gC1q) domain originally identified in the subunits of the complement protein C1q. We performed a basic PubMed literature search for articles mentioning the various CTRPs or their receptors in the abstract or title. In this narrative review, we briefly summarize the biology of CTRPs and focus then on the structure, receptors and major signaling pathways of CTRPs. Analyses of CTRP knockout mice and CTRP transgenic mice gave overwhelming evidence for the relevance of the anti-inflammatory and insulin-sensitizing effects of CTRPs in autoimmune diseases, obesity, atherosclerosis and cardiac dysfunction. CTRPs form homo- and heterotypic trimers and oligomers which can have different activities. The receptors of some CTRPs are unknown and some receptors are redundantly targeted by several CTRPs. The way in which CTRPs activate their receptors to trigger downstream signaling pathways is largely unknown. CTRPs and their receptors are considered as promising therapeutic targets but their translational usage is still hampered by the limited knowledge of CTRP redundancy and CTRP signal transduction.
T cell acute lymphoblastic leukemia (T-ALL) is commonly associated with activating mutations in the NOTCH1 pathway. Recent reports have shown a link between NOTCH1 signaling and intracellular Ca2+ homeostasis in T-ALL. Here, we investigate the role of store-operated Ca2+ entry (SOCE) mediated by the Ca2+ channel ORAI1 and its activators STIM1 and STIM2 in T-ALL. Deletion of STIM1 and STIM2 in leukemic cells abolishes SOCE and significantly prolongs the survival of mice in a NOTCH1-dependent model of T-ALL. The survival advantage is unrelated to the leukemic cell burden but is associated with the SOCE-dependent ability of malignant T lymphoblasts to cause inflammation in leukemia-infiltrated organs. Mice with STIM1/STIM2-deficient T-ALL show a markedly reduced necroinflammatory response in leukemia-infiltrated organs and downregulation of signaling pathways previously linked to cancer-induced inflammation. Our study shows that leukemic T lymphoblasts cause inflammation of leukemia-infiltrated organs that is dependent on SOCE.
Background
Enteric glial cells (EGCs) are the main constituent of the enteric nervous system and share similarities with astrocytes from the central nervous system including their reactivity to an inflammatory microenvironment. Previous studies on EGC pathophysiology have specifically focused on mucosal glia activation and its contribution to mucosal inflammatory processes observed in the gut of inflammatory bowel disease (IBD) patients. In contrast knowledge is scarce on intestinal inflammation not locally restricted to the mucosa but systemically affecting the intestine and its effect on the overall EGC network.
Methods and Results
In this study, we analyzed the biological effects of a systemic LPS-induced hyperinflammatory insult on overall EGCs in a rat model in vivo, mimicking the clinical situation of systemic inflammation response syndrome (SIRS). Tissues from small and large intestine were removed 4 hours after systemic LPS-injection and analyzed on transcript and protein level. Laser capture microdissection was performed to study plexus-specific gene expression alterations. Upon systemic LPS-injection in vivo we observed a rapid and dramatic activation of Glial Fibrillary Acidic Protein (GFAP)-expressing glia on mRNA level, locally restricted to the myenteric plexus. To study the specific role of the GFAP subpopulation, we established flow cytometry-purified primary glial cell cultures from GFAP promotor-driven EGFP reporter mice. After LPS stimulation, we analyzed cytokine secretion and global gene expression profiles, which were finally implemented in a bioinformatic comparative transcriptome analysis. Enriched GFAP+ glial cells cultured as gliospheres secreted increased levels of prominent inflammatory cytokines upon LPS stimulation. Additionally, a shift in myenteric glial gene expression profile was induced that predominantly affected genes associated with immune response.
Conclusion and Significance
Our findings identify the myenteric GFAP-expressing glial subpopulation as particularly susceptible and responsive to acute systemic inflammation of the gut wall and complement knowledge on glial involvement in mucosal inflammation of the intestine.
In der vorliegenden Arbeit wird der Einfluss von hs-CRP und Albumin auf die kardiovaskuläre Ereignisrate und das Überleben von Patienten mit Diabetes Mellitus Typ 2 an der Hämodialyse untersucht. Grundlagen für die hier dargestellte Auswertung sind die in der 4D Studie erhobenen Daten. Die 4D Studie hat prospektiv, randomisiert, doppelblind und placebo-kontrolliert untersucht, ob die Behandlung mit Atorvastatin bei Patienten mit Diabetes Mellitus Typ 2 an der Hämodialyse den primären Endpunkt bestehend aus Herzinfarkt, kardialem Tod und Schlaganfall zu senken vermag. Die Daten zum hs-CRP und Albumin wurden bei Studienbeginn und nach sechs Monaten erhoben. In einer post-hoc Analyse mit Hilfe eines multivariaten Cox Regressionsmodels konnte bestätigt werden, dass ein erhöhter Spiegel an hs-CRP und ein verminderter Spiegel an Albumin im Zusammenhang mit einer vermehrten kardiovaskulären Ereignisrate und Mortalität stehen. Eine Behandlung mit Atorvastatin führte zwar nicht zu einer Risikosenkung für den primären Endpunkt oder die Mortalität, hatte aber einen stabilisierenden Effekt auf des hs-CRP Spiegel.
The interplay of specific leukocyte subpopulations, resident cells and proalgesic mediators results in pain in inflammation. Proalgesic mediators like reactive oxygen species (ROS) and downstream products elicit pain by stimulation of transient receptor potential (TRP) channels. The contribution of leukocyte subpopulations however is less clear. Local injection of neutrophilic chemokines elicits neutrophil recruitment but no hyperalgesia in rats. In meta-analyses the monocytic chemoattractant, CCL2 (monocyte chemoattractant protein-1; MCP-1), was identified as an important factor in the pathophysiology of human and animal pain. In this study, intraplantar injection of CCL2 elicited thermal and mechanical pain in Wistar but not in Dark Agouti (DA) rats, which lack p47phox, a part of the NADPH oxidase complex. Inflammatory hyperalgesia after complete Freund's adjuvant (CFA) as well as capsaicin-induced hyperalgesia and capsaicin-induced current flow in dorsal root ganglion neurons in DA were comparable to Wistar rats. Macrophages from DA expressed lower levels of CCR2 and thereby migrated less towards CCL2 and formed limited amounts of ROS in vitro and 4-hydroxynonenal (4-HNE) in the tissue in response to CCL2 compared to Wistar rats. Local adoptive transfer of peritoneal macrophages from Wistar but not from DA rats reconstituted CCL2-triggered hyperalgesia in leukocyte-depleted DA and Wistar rats. A pharmacological stimulator of ROS production (phytol) restored CCL2-induced hyperalgesia in vivo in DA rats. In Wistar rats, CCL2-induced hyperalgesia was completely blocked by superoxide dismutase (SOD), catalase or tempol. Likewise, inhibition of NADPH oxidase by apocynin reduced CCL2-elicited hyperalgesia but not CFA-induced inflammatory hyperalgesia. In summary, we provide a link between CCL2, CCR2 expression on macrophages, NADPH oxidase, ROS and the development CCL2-triggered hyperalgesia, which is different from CFA-induced hyperalgesia. The study further supports the impact of CCL2 and ROS as potential targets in pain therapy.
CXCL10 Controls Inflammatory Pain via Opioid Peptide- Containing Macrophages in Electroacupuncture
(2014)
Acupuncture is widely used for pain treatment in patients with osteoarthritis or low back pain, but molecular mechanisms remain largely enigmatic. In the early phase of inflammation neutrophilic chemokines direct opioid-containing neutrophils in the inflamed tissue and stimulate opioid peptide release and antinociception. In this study the molecular pathway and neuroimmune connections in complete Freund's adjuvant (CFA)-induced hind paw inflammation and electroacupuncture for peripheral pain control were analyzed. Free moving Wistar rats with hind paw inflammation were treated twice with electroacupuncture at GB30 (Huan Tiao - gall bladder meridian) (day 0 and 1) and analyzed for mechanical and thermal nociceptive thresholds. The cytokine profiles as well as the expression of opioid peptides were quantified in the inflamed paw. Electroacupuncture elicited long-term antinociception blocked by local injection of anti-opioid peptide antibodies (beta-endorphin, met-enkephalin, dynorphin A). The treatment altered the cytokine profile towards an anti-inflammatory pattern but augmented interferon (IFN)-gamma and the chemokine CXCL10 (IP-10: interferon gamma-inducible protein) protein and mRNA expression with concomitant increased numbers of opioid peptide-containing CXCR3+ macrophages. In rats with CFA hind paw inflammation without acupuncture repeated injection of CXCL10 triggered opioid-mediated antinociception and increase opioid-containing macrophages. Conversely, neutralization of CXCL10 time-dependently decreased electroacupuncture-induced antinociception and the number of infiltrating opioid peptide-expressing CXCR3+ macrophages. In summary, we describe a novel function of the chemokine CXCL10 - as a regulator for an increase of opioid-containing macrophages and antinociceptive mediator in inflammatory pain and as a key chemokine regulated by electroacupuncture.
Bei Patienten mit Diabetes mellitus Typ 2 und chronischer Niereninsuffizienz ist Anämie häufig. Zum Teil ist sie durch ungenügende EPO-Produktion bedingt. Zusätzlich wird die Hämoglobinsynthese, wie bei der Anämie chronischer Krankheiten (anemia of chronic disease, ACD) beschrieben, durch entzündliche Vorgänge unterdrückt. Der Stellenwert endogenen Erythropoietins bei Patienten mit diabetischer Nephropathie und ACD bleibt noch unsicher sowie auch der Zusammenhang zwischen EPO und der Nierenfunktion. Diese Querschnittsanalyse schloss 224 Patienten mit Typ 2-Diabetes in allen Stadien chronischer Niereninsuffizienz (CNI-Stadium 1-5) ein. Das mediane Alter betrug 67 Jahre, 54 % waren männlich und die mediane GFR lag bei 49 ml/min. Gemäß den Definitionen der K/DOQI-Richtlinien waren 41 % der Patienten anämisch. Von der Studie ausgeschlossen wurden wegen der Anämie behandelte Patienten und solche mit Eisenmangel. Prädiktoren der log-transformierten EPO-Spiegel wurden unter Benutzung multivariater linearer Regressionsmodelle ausgewertet. Die univariate und inverse Beziehung zwischen GFR und EPO-Spiegeln (p = 0,009) wurde in der multivariaten Analyse nicht-signifikant. Erhöhtes CRP (p < 0,001), niedriges Ferritin (p = 0,002), kardiovaskuläre Ereignisse in der Vorgeschichte (p = 0,02) und Hypertension (p = 0,04) waren nach Adjustierung für Alter, Geschlecht, Hb, GFR und andere klinische Faktoren unabhängig mit erhöhten EPO-Spiegeln assoziiert. In der untersuchten Population fand sich kein Zusammenhang zwischen EPO-Spiegeln und Hämoglobin. Bei diabetischen Patienten mit chronischer Niereninsuffizienz werden die EPO-Spiegel trotz gleichzeitig niedriger Hämoglobinspiegel vor allem durch Entzündungsparameter und den Eisenstatus vorhergesagt und sind dabei unabhängig von der Nierenfunktion. Deshalb könnte die Anämie bei Patienten mit diabetischer Nephropathie hauptsächlich durch Inflammation entstehen, die zu einem relativen Eisenmangel und einer Resistenz des Knochenmarks gegenüber endogenem EPO führt.
Chronic kidney disease (CKD) is a debilitating pathology with various causal factors, culminating in end stage renal disease (ESRD) requiring dialysis or kidney transplantation. The progression of CKD is closely associated with systemic inflammation and oxidative stress, which are responsible for the manifestation of numerous complications such as malnutrition, atherosclerosis, coronary artery calcification, heart failure, anemia and mineral and bone disorders, as well as enhanced cardiovascular mortality. In addition to conventional therapy with anti-inflammatory and antioxidative agents, growing evidence has indicated that certain minerals, vitamins and plant-derived metabolites exhibit beneficial effects in these disturbances. In the current work, we review the anti-inflammatory and antioxidant properties of various agents which could be of potential benefit in CKD/ESRD. However, the related studies were limited due to small sample sizes and short-term follow-up in many trials. Therefore, studies of several anti-inflammatory and antioxidant agents with long-term follow-ups are necessary.
Multiple sclerosis (MS) is a chronic inflammatory and degenerative disease of the central nervous system (CNS). MS commonly affects the cerebellum causing acute and chronic symptoms. Cerebellar signs significantly contribute to clinical disability, and symptoms such as tremor, ataxia, and dysarthria are difficult to treat. Fibroblast growth factors (FGFs) and their receptors (FGFRs) are involved in demyelinating pathologies such as MS. In autopsy tissue from patients with MS, increased expression of FGF1, FGF2, FGF9, and FGFR1 was found in lesion areas. Recent research using mouse models has focused on regions such as the spinal cord, and data on the expression of FGF/FGFR in the cerebellum are not available. In recent EAE studies, we detected that oligodendrocyte-specific deletion of FGFRs results in a milder disease course, less cellular infiltrates, and reduced neurodegeneration in the spinal cord. The objective of this study was to characterize the role of FGFR1 in oligodendrocytes in the cerebellum. Conditional deletion of FGFR1 in oligodendrocytes (Fgfr1\(^{ind−/−}\) was achieved by tamoxifen application, EAE was induced using the MOG\(_{35-55}\) peptide. The cerebellum was analyzed by histology, immunohistochemistry, and western blot. At day 62 p.i., Fgfr1\(^{ind−/−}\) mice showed less myelin and axonal degeneration compared to FGFR1-competent mice. Infiltration of CD3(+) T cells, Mac3(+) cells, B220(+) B cells and IgG(+) plasma cells in cerebellar white matter lesions (WML) was less in Fgfr1\(^{ind−/−}\)mice. There were no effects on the number of OPC or mature oligodendrocytes in white matter lesion (WML). Expression of FGF2 and FGF9 associated with less myelin and axonal degeneration, and of the pro-inflammatory cytokines IL-1β, IL-6, and CD200 was downregulated in Fgfr1\(^{ind−/−}\) mice. The FGF/FGFR signaling protein pAkt, BDNF, and TrkB were increased in Fgfr1\(^{ind−/−}\) mice. These data suggest that cell-specific deletion of FGFR1 in oligodendrocytes has anti-inflammatory and neuroprotective effects in the cerebellum in the EAE disease model of MS.
Onkolytische Viren spielen eine immer bedeutendere Rolle für die Tumorforschung, weil in zahlreichen präklinischen Studien gezeigt werden konnte, dass viral bedingte Onkolyse zu einer Tumorregression führt. Ein äußerst vielversprechender Kandidat der onkolytischen Viren ist das Vaccinia-Virus. In der vorliegenden Arbeit wurde mit dem attenuierten Vaccinia-Virus GLV-1h68 gearbeitet, welches nach systemischer Applikation eine Regression von Tumoren verursacht. Obwohl bereits zahlreiche onkolytische Viren in klinischen Studien Anwendung finden, sind zugrunde liegende Abläufe bei einer Virusinfektion solider Tumore sowie Mechanismen, welche für die Tumorregression verantwortlich sind, immer noch nicht erschlossen. Um Aufschluss über notwendige Parameter für eine effiziente Infektion eines soliden Tumors mit GLV-1h68 zu erlangen, wurden im ersten Teil dieser Arbeit die uninfizierte Tumormikroumgebung sowie stromale Veränderungen in der frühe Phase der Infektion untersucht. Als Tumormodell diente hierbei ein humanes autologes Melanomzellpaar (888-MEL und 1936-MEL). Diese beiden Zelllinien sind Teil einer Reihe von fünf verschiedenen Melanomzelllinien, welche alle aus den widerkehrenden Metastasen eines einzelnen Patienten (Patient 888) isoliert wurden. 888-MEL zeigt nach Virusinfektion mit GLV-1h68 ein regredierendes Verhalten (therapeutischer Index: 88,0) und ist somit respondierend nach GLV-1h68-Infektion. 1936-MEL hingegen zeigte mit einem therapeutischen Index von 13,7 ein nur schwach verlangsamtes Wachstum solider Tumore, und ist somit schwach-respondierend nach GLV-1h68-Infektion. Als ein Grund, weshalb diese beiden autologen Melanomzelllinien unterschiedlich auf GLV-1h68-Infektion reagieren, wurde die Anzahl der Viruspartikel vermutet, welche 1 dpi im soliden Tumor vorliegt. Eine mögliche Korrelation zwischen initialem viralen Titer 1 dpi und späterer Tumorregression konnte experimentell aber nicht nachgewiesen werden. Zwei voneinander unabhängige Experimentreihen zeigten, dass bei identischer systemischer Applikation in den beiden soliden Tumoren kein Unterschied des viralen Titers vorlag. Weiterhin wurden die Komponenten der Tumormikroumgebung und ihr möglicher Einfluss auf die Effizienz der Virusinfektion untersucht. Immunhistologische Studien zeigten, dass es im uninfizierten Zustand bei soliden 888-MEL Tumoren zu einer massiven Infiltration CD45-positiver Zellen kam, die bei 1936-MEL-Tumoren jedoch nicht zu finden war. Die Beobachtung steht in Übereinstimmung mit Ergebnissen einer vergleichenden Microarray-Analyse, die das Infiltrat CD45-positiver Zellen in 888-MEL Tumoren genauer charakterisierte. Es wurde mit Microarray-Analyse eine erhöhte Expression chemotaktischer Moleküle in soliden 888-MEL Tumoren nachgewiesen. Unter anderem wird CCL8 (MCP-2) erhöht exprimiert. Als chemotaktisches Molekül hat CCL8 eine erhöhte Monozyteninfiltration zur Folge. Weiterhin wurde eine erhöhte Expression von MIF (macrophage migration inhibitory factor) und dem entsprechendem Rezeptor CD74 in uninfizierten 888-MEL-Tumoren gemessen. MIF induziert als proinflammatorisches Zytokin die Synthese inflammatorischer Mediatoren. Dies erklärt die Anhäufung CD45-positiver Zellen in der Tumormikroumgebung. Durch eine erhöhte Expression MHC II-verwandter Gene in soliden 888-MEL- Tumoren wurden die CD45-positiven Zellen als Monozyten identifiziert. Um die Funktion der Immunzellen zu analysieren, wurde durch eine intraperitoneale Applikation des Zytostatikums Cyclophosphamid eine Monozytendepletion induziert. Diese Immundepletion resultierte in soliden 888-MEL- Tumoren in einer signifikant verringerten Virusreplikation und -Ausbreitung nach Infektion mit GLV-1h68. Diese Ergebnisse implizieren, dass durch eine erhöhte Infiltration CD45-positiver Zellen in die Tumormikroumgebung die GLV-1h68-Infektion und -Replikation erleichtert wird. Nach Ausbreitung der Infektion kommt es in respondierenden Tumoren nach einem ersten Wachtumsarrest zu einer Tumorregression. Um Aufschluss über den beteiligten Mechanismus bei der Tumorregression zu erlangen, wurden GLV-1h68-infizierte-Tumore in der späten Phase der Infektion untersucht. Drei mögliche Mechanismen viral verursachter Onkolyse wurden beschrieben: Tumorzell-spezifische Onkolyse, Zerstörung der Tumorvaskulatur oder anti-tumorale Immunantwort. Für diese Experimente wurden humane Brustkarzinomzellen als Tumormodell verwendet. Mit diesem Tumormodell sollte analysiert werden, welcher der drei bislang diskutierten Mechanismen bei einer GLV-1h68-Infektion vorlag. Als erstes zeigten histologische Studien, dass Virusinfektion und -Replikation zu ausgedehnten Tumornekrosen führen. Dabei blieben die Blutgefäße in uninfizierten und auch in infizierten Bereichen des Tumors intakt und funktionell aktiv. Systemische Perfusion der Vaskulatur mit Lektin zeigte, dass die Tumorvaskulatur an das periphere Blutgefäßsystem angeschlossen war. Nachfolgende Experimente zeigten, dass Endothelzellen nicht durch die Viren infiziert wurden, wohingegen aber Endothelzell-ummantelnde, Gefäß-stabilisierende Perizyten nur in uninfizierten, nicht aber in infizierten Bereichen des Tumors vorkamen. Perizyten wurden möglicherweise durch Virusinfektion lysiert. Morphologische und funktionelle Analyse der Blutgefäße im Tumor zeigte, dass GLV-1h68-Infektion Hyperpermeabilität, Vasodilatation und eine erhöhte Expression des Adhäsionsmoleküls CD31 verursachte. Eine erhöhte CD31-Expression erleichtert eine Infiltration rekrutierter Immunzellen. Das konnte durch immunhistochemische Färbung von CD45 und MHC II besonders in intratumoralen Bereichen gezeigt werden. Durch Cyclophosphamid-vermittelte Immunsuppression wurde nachgewiesen, dass diese rekrutierten Immunzellen keinen ausschlaggebenden Einfluss auf die Tumorregression haben. Nach Immundepletion in soliden GI-101A-Tumoren konnte eine verstärkte Virusinfektion, effektivere Onkolyse und frühzeitigere Tumorregression nachgewiesen werden. Zusammenfassend zeigten diese Ergebnisse, dass der dominierende Mechanismus, welcher zur Tumorregression führt, die Onkolyse ist.
Anxiety disorders and depression are common comorbidities in cardiac patients. Mice lacking the serotonin transporter (5-HTT) exhibit increased anxiety-like behavior. However, the role of 5-HTT deficiency on cardiac aging, and on healing and remodeling processes after myocardial infarction (MI), remains unclear. Cardiological evaluation of experimentally naïve male mice revealed a mild cardiac dysfunction in ≥4-month-old 5-HTT knockout (−/−) animals. Following induction of chronic cardiac dysfunction (CCD) by MI vs. sham operation 5-HTT−/− mice with infarct sizes >30% experienced 100% mortality, while 50% of 5-HTT+/− and 37% of 5-HTT+/+ animals with large MI survived the 8-week observation period. Surviving (sham and MI < 30%) 5-HTT−/− mutants displayed reduced exploratory activity and increased anxiety-like behavior in different approach-avoidance tasks. However, CCD failed to provoke a depressive-like behavioral response in either 5-Htt genotype. Mechanistic analyses were performed on mice 3 days post-MI. Electrocardiography, histology and FACS of inflammatory cells revealed no abnormalities. However, gene expression of inflammation-related cytokines (TGF-β, TNF-α, IL-6) and MMP-2, a protein involved in the breakdown of extracellular matrix, was significantly increased in 5-HTT−/− mice after MI. This study shows that 5-HTT deficiency leads to age-dependent cardiac dysfunction and disrupted early healing after MI probably due to alterations of inflammatory processes in mice.
Schmerz ist eine klassische Komponente von Entzündungsreaktionen. Im Rahmen des Entzündungsgeschehens werden Zytokine und Chemokine freigesetzt, die Leukozyten zum Entzündungsort rekrutieren. Über die Freisetzung weiterer proalgetischer Mediatoren tragen diese zur Aktivierung und Sensitivierung von Nozizeptoren und damit zur Schmerzentstehung bei. Das Monozyten-rekrutierende Chemokin CCL2 verursachte in Verhaltensexperimenten eine Hyperalgesie bei Ratten. Die Hyperalgesie war durch den Cox-2 Inhibitor Parecoxib vollständig reversibel. Daher wurde in dieser Arbeit die Rolle von Monozyten und Prostaglandinen in der Entstehung dieser Hyperalgesie untersucht. Dazu wurde in vitro die Cox-2 Expression und die Prostaglandin-Bildung in humanen Monozyten und Peritonealmakrophagen der Ratte nach CCL2 Stimulation bestimmt. Zudem wurde in vivo die Cox-2 Expression im Rückenmark und in der Rattenpfote nach CCL2 Injektion in die Pfote untersucht.
Fulminant myocarditis is rare but a potentially life-threatening disease. Acute or mild myocarditis following acute ischemia is generally associated with a profound activation of the host’s immune system. On one hand this is mandatory to protect the host’s heart by fighting the invading agents (i.e., bacteria, viruses or other microbial agents) and/or to induce healing and repair processes in the damaged myocardium. On other hand, uncontrolled activation of the immune system may result in the generation of auto-reactive (not always beneficial) immune cells.
Myocarditis or inflammatory cardiomyopathy is characterized by focal or diffuse infiltrates, myocyte necrosis and/or apoptosis and subsequent fibrotic replacement of the heart muscle. In humans, about 30% of the myocarditis-patients develop dilated cardiomyopathy. As the clinical picture of myocarditis is multifaceted, it is difficult to diagnose the disease. Therefore, the main goal of the present work was to test and further develop novel non-invasive methods for the detection of myocardial inflammation by employing both contrast enhanced MRI techniques as well as novel nuclear tracers that are suitable for in vivo PET/ SPECT imaging.
As a part of this thesis, a pre-clinical animal model was successfully established by immunizing female Lewis rats with whole-porcine cardiac myosin (CM). Induction of Experimental Autoimmune Myocarditis (EAM) is considered successful when anti-myosin antibody titers are increased more than 100-fold over control animals and pericardial effusion develops. In addition, cardiac tissues from EAM-rats versus controls were analyzed for the expression of various pro-inflammatory and fibrosis markers. To further exploit non-invasive MRI techniques for the detection of myocarditis, our EAM-rats were injected either with (1) ultra-small Paramagnetic iron oxide particles (USPIO’s; Feraheme®), allowing for in vivo imaging , (2) micron sized paramagnetic iron oxide particles (MPIO) for ex vivo inflammatory cell-tracking by cMRI, or (3) with different radioactive nuclear tracers (67gallium citrate, 68gallium-labeled somatostatin analogue, and 68gallium-labeled cyclic RGD-peptide) which in the present work have been employed for autoradiographic imaging, but in principle are also suitable for in vivo nuclear imaging (PET/SPECT). In order to compare imaging results with histology, consecutive heart sections were stained with hematoxylin & eosin (HE, for cell infiltrates) and Masson Goldner trichrome (MGT, for fibrosis); in addition, immuno-stainings were performed with anti-CD68 (macrophages), anti-SSRT2A (somatostatin receptor type 2A), anti-CD61 (β3-integrins) and anti-CD31 (platelet endothelial cell adhesion molecule 1).
Sera from immunized rats strongly reacted with cardiac myosin. In immunized rats, echocardiography and subsequent MRI revealed huge amounts of pericardial effusion (days 18-21). Analysis of the kinetics of myocardial infiltrates revealed maximal macrophage invasion between days 14 and 28. Disappearance of macrophages resulted in replacement-fibrosis in formerly cell-infiltrated myocardial areas. This finding was confirmed by the time-dependent differential expression of corresponding cytokines in the myocardium. Immunized animals reacted either with an early or a late pattern of post-inflammation fibrosis. Areas with massive cellular infiltrates were easily detectible in autoradiograms showing a high focal uptake of 67gallium-citrate and 68gallium labeled somatostatin analogues (68Ga DOTA-TATE). Myocardium with a loss of cardiomyocytes presented a high uptake of 68gallium labeled cyclic RGD-peptide (68Ga NOTA-RGD). MRI cell tracking experiments with Feraheme® as the contrast-agent were inconclusive; however, strikingly better results were obtained when MPIOs were used as a contrast-agent: histological findings correlated well with in vivo and ex vivo MPIO-enhanced MRI images.
Imaging of myocardial inflammatory processes including the kinetics of macrophage invasion after microbial or ischemic damage is still a major challenge in, both animal models and in human patients. By applying a broad panel of biochemical, histological, molecular and imaging methods, we show here that different patterns of reactivity may occur upon induction of myocarditis using one and the same rat strain. In particular, immunized Lewis rats may react either with an early or a late pattern of macrophage invasion and subsequent post-inflammation fibrosis. Imaging results achieved in the acute inflammatory phase of the myocarditis with MPIOs, 67gallium citrate and 68gallium linked to somatostatin will stimulate further development of contrast agents and radioactive-nuclear tracers for the non-invasive detection of acute myocarditis and in the near future perhaps even in human patients.
Background: Tumor necrosis factor-like weak inducer of apoptosis (TWEAK) and its receptor fibroblast growth factorinducible 14 (Fn14) are upregulated after myocardial infarction (MI) in both humans and mice. They modulate inflammation and the extracellular matrix, and could therefore be important for healing and remodeling after MI. However, the function of TWEAK after MI remains poorly defined.
Methods and results: Following ligation of the left coronary artery, mice were injected twice per week with a recombinant human serum albumin conjugated variant of TWEAK (HSA-Flag-TWEAK), mimicking the activity of soluble TWEAK. Treatment with HSA-Flag-TWEAK resulted in significantly increased mortality in comparison to the placebo group due to myocardial rupture. Infarct size, extracellular matrix remodeling, and apoptosis rates were not different after MI. However, HSA-Flag-TWEAK treatment increased infiltration of proinflammatory cells into the myocardium. Accordingly, depletion of neutrophils prevented cardiac ruptures without modulating all-cause mortality.
Conclusion: Treatment of mice with HSA-Flag-TWEAK induces myocardial healing defects after experimental MI. This is mediated by an exaggerated neutrophil infiltration into the myocardium.
Augmenting the vascular supply to generate new tissues, a crucial aspect in regenerative medicine, has been challenging. Recently, our group showed that calcium phosphate can induce the formation of a functional neo-angiosome without the need for microsurgical arterial anastomosis. This was a preclinical proof of concept for biomaterial-induced luminal sprouting of large-diameter vessels. In this study, we investigated if sprouting was a general response to surgical injury or placement of an inorganic construct around the vessel. Cylindrical biocement scaffolds of differing chemistries were placed around the femoral vein. A contrast agent was used to visualize vessel ingrowth into the scaffolds. Cell populations in the scaffold were mapped using immunohistochemistry. Calcium phosphate scaffolds induced 2.7–3 times greater volume of blood vessels than calcium sulphate or magnesium phosphate scaffolds. Macrophage and vSMC populations were identified that changed spatially and temporally within the scaffold during implantation. NLRP3 inflammasome activation peaked at weeks 2 and 4 and then declined; however, IL-1β expression was sustained over the course of the experiment. IL-8, a promoter of angiogenesis, was also detected, and together, these responses suggest a role of sterile inflammation. Unexpectedly, the effect was distinct from an injury response as a result of surgical placement and also was not simply a foreign body reaction as a result of placing a rigid bioceramic next to a vein, since, while the materials tested had similar microstructures, only the calcium phosphates tested elicited an angiogenic response. This finding then reveals a potential path towards a new strategy for creating better pro-regenerative biomaterials.
Stroma-infiltrating immune cells, such as tumor-associated macrophages (TAM), play an important role in regulating tumor progression and chemoresistance. These effects are mostly conveyed by secreted mediators, among them several cathepsin proteases. In addition, increasing evidence suggests that stroma-infiltrating immune cells are able to induce profound metabolic changes within the tumor microenvironment. In this study, we aimed to characterize the impact of cathepsins in maintaining the TAM phenotype in more detail. For this purpose, we investigated the molecular effects of pharmacological cathepsin inhibition on the viability and polarization of human primary macrophages as well as its metabolic consequences. Pharmacological inhibition of cathepsins B, L, and S using a novel inhibitor, GB111-NH\(_2\), led to changes in cellular recycling processes characterized by an increased expression of autophagy- and lysosome-associated marker genes and reduced adenosine triphosphate (ATP) content. Decreased cathepsin activity in primary macrophages further led to distinct changes in fatty acid metabolites associated with increased expression of key modulators of fatty acid metabolism, such as fatty acid synthase (FASN) and acid ceramidase (ASAH1). The altered fatty acid profile was associated with an increased synthesis of the pro-inflammatory prostaglandin PGE\(_2\), which correlated with the upregulation of numerous NF\(_k\)B-dependent pro-inflammatory mediators, including interleukin-1 (IL-1), interleukin-6 (IL-6), C-C motif chemokine ligand 2 (CCL2), and tumor necrosis factor-alpha (TNFα). Our data indicate a novel link between cathepsin activity and metabolic reprogramming in macrophages, demonstrated by a profound impact on autophagy and fatty acid metabolism, which facilitates a pro-inflammatory micromilieu generally associated with enhanced tumor elimination. These results provide a strong rationale for therapeutic cathepsin inhibition to overcome the tumor-promoting effects of the immune-evasive tumor micromilieu.
Antinociceptive pathways are activated in the periphery in inflammatory pain, for instance resolvins and opioid peptides. Resolvins are biosynthesized from omega-3 polyunsaturated fatty acids such as eicosapentaenoic acid and docosahexaenoic acid. Resolvin D1 (RvD1) and resolvin E1 (RvE1) initiate the resolution of inflammation and control of hypersensitivity via induction of anti-inflammatory signaling cascades. RvD1 binds to lipoxin A4/annexin-A1 receptor/formyl-peptide receptor 2 (ALX/FPR2), RvE1 to chemerin receptor 23 (ChemR23). Antinociception of RvD1 is mediated by interaction with transient receptor potential channels ankyrin 1 (TRPA1). Endogenous opioid peptides are synthesized and released from leukocytes in the tissue and bind to opioid receptors on nociceptor terminals. Here, we further explored peripheral mechanisms of RvD1 and chemerin (Chem), the ligand of ChemR23, in complete Freund’s adjuvant (CFA)-induced hindpaw inflammation in male Wistar rats. RvD1 and Chem ameliorated CFA-induced hypersensitivity in early and late inflammatory phases. This was prevented by peripheral blockade of the μ-opioid peptide receptor (MOR) using low dose local naloxone or by local injection of anti-β-endorphin and anti-met-enkephalin (anti-ENK) antibodies. Naloxone also hindered antinociception by the TRPA1 inhibitor HC-030031. RvD1 did not stimulate the release of β-endorphin from macrophages and neutrophils, nor did RvD1 itself activate G-proteins coupled MOR or initiate β-arrestin recruitment to the membrane. TRPA1 blockade by HC-030031 in inflammation in vivo as well as inhibition of the TRPA1-mediated calcium influx in dorsal root ganglia neurons in vitro was hampered by naloxone. Peripheral application of naloxone alone in vivo already lowered mechanical nociceptive thresholds. Therefore, either a perturbation of the balance of endogenous pro- and antinociceptive mechanisms in early and late inflammation, or an interaction of TRPA1 and opioid receptors weaken the antinociceptive potency of RvD1 and TRPA1 blockers.
The incidence of cardiovascular and metabolic diseases has increased over the last decades and is an important cause of death worldwide. An upcoming ingredient on the nutraceutical market are anthocyanins, a flavonoid subgroup, abundant mostly in berries and fruits. Epidemiological studies have suggested an association between anthocyanin intake and improved cardiovascular risk, type 2 diabetes and myocardial infarct. Clinical studies using anthocyanins have shown a significant decrease in inflammation markers and oxidative stress, a beneficial effect on vascular function and hyperlipidemia by decreasing low-density lipoprotein and increasing high-density lipoprotein. They have also shown a potential effect on glucose homeostasis and cognitive decline. This review summarizes the effects of anthocyanins in in-vitro, animal and human studies to give an overview of their application in medical prevention or as a dietary supplement.
Objectives
The severity of Coronavirus Disease 2019 (COVID-19) is largely determined by the immune response. First studies indicate altered lymphocyte counts and function. However, interactions of pro- and anti-inflammatory mechanisms remain elusive. In the current study we characterized the immune responses in patients suffering from severe COVID-19-induced acute respiratory distress syndrome (ARDS).
Methods
This was a single-center retrospective study in patients admitted to the intensive care unit (ICU) with confirmed COVID-19 between March 14th and May 28th 2020 (n = 39). Longitudinal data were collected within routine clinical care, including flow-cytometry of lymphocyte subsets, cytokine analysis and growth differentiation factor 15 (GDF-15). Antibody responses against the receptor binding domain (RBD) of Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) Spike protein were analyzed.
Results
All patients suffered from severe ARDS, 30.8% died. Interleukin (IL)-6 was massively elevated at every time-point. The anti-inflammatory cytokine IL-10 was concomitantly upregulated with IL-6. The cellular response was characterized by lymphocytopenia with low counts of CD8+ T cells, natural killer (NK) and naïve T helper cells. CD8+ T and NK cells recovered after 8 to 14 days. The B cell system was largely unimpeded. This coincided with a slight increase in anti-SARS-CoV-2-Spike-RBD immunoglobulin (Ig) G and a decrease in anti-SARS-CoV-2-Spike-RBD IgM. GDF-15 levels were elevated throughout ICU treatment.
Conclusions
Massively elevated levels of IL-6 and a delayed cytotoxic immune defense characterized severe COVID-19-induced ARDS. The B cell response and antibody production were largely unimpeded. No obvious imbalance of pro- and anti-inflammatory mechanisms was observed, with elevated GDF-15 levels suggesting increased tissue resilience.
Endothelzellen sind ein aktiver Bestandteil der angeborenen Immunabwehr des Menschen gegen mikrobielle Pathogene. Unter ungünstigen Bedingungen kann die Abwehrreaktion sogar zu einer lebensbedrohlichen Sepsis führen. Hier wurde die bislang wenig bekannte Endothelantwort auf den fakultativ humanpathogenen Hefepilz Candida albicans, einem der häufigsten Verursacher von letaler Sepsis beim Menschen, näher untersucht. Mittels Oligonukleotid-Mikroarray-Analyse von HUVEC nach Exposition mit C. albicans konnten 56 hochregulierte Gene identifiziert werden, während 69 Gene herunterreguliert wurden. Ein bedeutender Anteil der regulierten Gene ist an Prozessen der angeborenen Immunantwort beteiligt und dient hauptsächlich der Rekrutierung von Neutrophilen. Weitere Untersuchungen ergaben eine zentrale Rolle des proinflammatorischen NF-kappaB-Weges bei der Regulation des Candida-induzierten Transkriptoms von Endothelzellen. Es konnte gezeigt werden, dass C. albicans diesen Signalweg sequenziell aktiviert. Zusätzlich konnte durch die Expression einer dominant-negativen Mutante einer Signalkomponente des NF-kappaB-Signalwegs die Candida-vermittelte Induktion von kappaB-abhängigen Genen gehemmt werden. Mit einem pharmakologischen Ansatz wurde der p38 MAP Kinase-Signalweg als weiterer bedeutsamer Signalweg identifiziert, der die Expression einzelner Candida-Zielgene wie CXCL8/IL-8 moduliert. Schließlich wurde gezeigt, dass die Candida-induzierte NF-kappaB-Aktivierung im untersuchten endothelialen Zellsystem unabhängig von den Toll-like Rezeptoren TLR2 und TLR4 geschieht, die üblicherweise an der Erkennung mikrobieller Pathogene beteiligt sind. Durch RNA-Interferenz-Experimente konnte jedoch dargelegt werden, dass das Adaptermolekül MyD88 und die Kinase IRAK1, die beide entscheidend an der TLR-vermittelten Signaltransduktion beteiligt sind, essentiell für die Weiterleitung des Signals in Endothelzellen sind. Nachfolgend konnte mit TLR3 zumindest einer der signaltransduzierenden Rezeptoren identifiziert werden. Als erste umfassende Untersuchung der endothelialen Antwort auf Candida albicans erlaubt die vorliegende Arbeit neue Einblicke in die komplexen Signalmuster von Endothelzellen, die dieser klinisch bedeutende Krankheitserreger auslöst.
The complement system is pivotal in the defense against invasive disease caused by Neisseria meningitidis (Nme, meningococcus), particularly via the membrane attack complex. Complement activation liberates the anaphylatoxins C3a and C5a, which activate three distinct G-protein coupled receptors, C3aR, C5aR1 and C5aR2 (anaphylatoxin receptors, ATRs). We recently discovered that C5aR1 exacerbates the course of the disease, revealing a downside of complement in Nme sepsis. Here, we compared the roles of all three ATRs during mouse nasal colonization, intraperitoneal infection and human whole blood infection with Nme. Deficiency of complement or ATRs did not alter nasal colonization, but significantly affected invasive disease: Compared to WT mice, the disease was aggravated in C3ar\(^{-/-}\) mice, whereas C5ar1\(^{-/-}\) and C5ar2\(^{-/-}\) mice showed increased resistance to meningococcal sepsis. Surprisingly, deletion of either of the ATRs resulted in lower cytokine/chemokine responses, irrespective of the different susceptibilities of the mice. This was similar in ex vivo human whole blood infection using ATR inhibitors. Neutrophil responses to Nme were reduced in C5ar1\(^{-/-}\) mouse blood. Upon stimulation with C5a plus Nme, mouse macrophages displayed reduced phosphorylation of ERK1/2, when C5aR1 or C5aR2 were ablated or inhibited, suggesting that both C5a-receptors prime an initial macrophage response to Nme. Finally, in vivo blockade of C5aR1 alone (PMX205) or along with C5aR2 (A8\(^{Δ71−73}\)) resulted in ameliorated disease, whereas neither antagonizing C3aR (SB290157) nor its activation with a “super-agonist” peptide (WWGKKYRASKLGLAR) demonstrated a benefit. Thus, C5aR1 and C5aR2 augment disease pathology and are interesting targets for treatment, whereas C3aR is protective in experimental meningococcal sepsis.
Aims
It has been hypothesized that cardiac decompensation accompanying acute heart failure (AHF) episodes generates a pro-inflammatory environment boosting an adaptive immune response against myocardial antigens, thus contributing to progression of heart failure (HF) and poor prognosis. We assessed the prevalence of anti-myocardial autoantibodies (AMyA) as biomarkers reflecting adaptive immune responses in patients admitted to the hospital for AHF, followed the change in AMyA titres for 6 months after discharge, and evaluated their prognostic utility.
Methods and results
AMyA were determined in n = 47 patients, median age 71 (quartiles 60; 80) years, 23 (49%) female, and 24 (51%) with HF with preserved ejection fraction, from blood collected at baseline (time point of hospitalization) and at 6 month follow-up (visit F6). Patients were followed for 18 months (visit F18). The prevalence of AMyA increased from baseline (n = 21, 45%) to F6 (n = 36, 77%; P < 0.001). At F6, the prevalence of AMyA was higher in patients with HF with preserved ejection fraction (n = 21, 88%) compared with patients with reduced ejection fraction (n = 14, 61%; P = 0.036). During the subsequent 12 months after F6, that is up to F18, patients with newly developed AMyA at F6 had a higher risk for the combined endpoint of death or rehospitalization for HF (hazard ratio 4.79, 95% confidence interval 1.13–20.21; P = 0.033) compared with patients with persistent or without AMyA at F6.
Conclusions
Our results support the hypothesis that AHF may induce patterns of adaptive immune responses. More studies in larger populations and well-defined patient subgroups are needed to further clarify the role of the adaptive immune system in HF progression.
Memory B cells have known to play an important role in the pathogenesis of rheumatoid arthritis (RA). With the emergence of B cell-targeted therapies, the modulation of memory B cells appears to be a key therapeutic target. Human peripheral memory B cells can be distinguished based on the phenotypic expression of CD27 and IgD, characterizing the three major B cell subpopulations: CD27+IgD+ pre-switch, CD27+IgD- post-switch, and CD27-IgD- double-negative memory B cells. We evaluated different memory cell populations for activation markers (CD95 and Ki-67) and chemokine receptors (CXCR3 and 4) expressing B cells in active RA, as well as under IL6-R blockade by tocilizumab (TCZ) and TNF-α blockade by adalimumab (ADA). Memory B cells were phenotypically analyzed from RA patients at baseline, week 12, and week 24 under TCZ or ADA treatment, respectively. Using flow cytometry, surface expression of CD95, intracellular Ki-67, and surface expressions of CXCR3 and CXCR4 were determined. Compared with healthy donors (n = 40), the phenotypic analysis of RA patients (n = 80) demonstrated that all three types of memory B cells were activated in RA patients. Surface and intracellular staining of B cells showed a significantly higher percentage of CD95+ (p < 0.0001) and Ki-67+ (p < 0.0001) cells, with numerically altered CXCR3+ and CXCR4+ cells in RA. CD95 and Ki-67 expressions were highest in post-switch memory B cells, whereas CD19+CXCR3+ and CD19+CXCR4+ expressing cells were substantially higher in the pre-switch compartment. In all subsets of the memory B cells, in vivo IL-6R, and TNF-α blockade significantly reduced the enhanced expressions of CD95 and Ki-67. Based on our findings, we conclude that the three major peripheral memory B cell populations, pre-, post-switch, and double-negative B cells, are activated in RA, demonstrating enhanced CD95 and Ki-67 expressions, and varied expression of CXCR3 and CXCR4 chemokine receptors when compared with healthy individuals. This activation can be efficaciously modulated under cytokine inhibition in vivo.
Chronic Kidney Disease (CKD) is a debilitating disease associated with several secondary complications that increase comorbidity and mortality. In patients with CKD, there is a significant qualitative and quantitative alteration in the gut microbiota, which, consequently, also leads to reduced production of beneficial bacterial metabolites, such as short-chain fatty acids. Evidence supports the beneficial effects of short-chain fatty acids in modulating inflammation and oxidative stress, which are implicated in CKD pathogenesis and progression. Therefore, this review will provide an overview of the current knowledge, based on pre-clinical and clinical evidence, on the effect of SCFAs on CKD-associated inflammation and oxidative stress.