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Background
Postherpetic neuralgia (PHN) is the painful complication of a varicella zoster virus reactivation. We investigated the systemic and local gene expression of pro- and anti-inflammatory cytokine expression in patients with PHN.
Methods
Thirteen patients with PHN at the torso (Th4-S1) were recruited. Skin punch biopsies were obtained from the painful and the contralateral painless body area for intraepidermal nerve fiber density (IENFD) and cytokine profiling. Additionally, blood was withdrawn for systemic cytokine expression and compared to blood values of healthy controls. We analyzed the gene expression of selected pro- and anti-inflammatory cytokines (tumor necrosis factor-alpha [TNF] and interleukins [IL]-1β, IL-2, and IL-8).
Results
IENFD was lower in affected skin compared to unaffected skin (p<0.05), while local gene expression of pro- and anti-inflammatory cytokines did not differ except for two patients who had 7fold higher IL-6 and 10fold higher IL-10 gene expression in the affected skin compared to the contralateral unaffected skin sample. Also, the systemic expression of cytokines in patients with PHN and in healthy controls was similar.
Conclusion
While the systemic and local expression of the investigated pro- and anti-inflammatory cytokines was not different from controls, this may have been influenced by study limitations like the low number of patients and different disease durations. Furthermore, other cytokines or pain mediators need to be considered.
Interleukin-4 (IL-4) is an anti-inflammatory and analgesic cytokine that induces opioid receptor transcription. We investigated IL-4 knockout (ko) mice to characterize their pain behavior before and after chronic constriction injury (CCI) of the sciatic nerve as a model for neuropathic pain. We investigated opioid responsivity and measured cytokine and opioid receptor gene expression in the peripheral and central nervous system (PNS, CNS) of IL-4 ko mice in comparison with wildtype (wt) mice. Naïve IL-4 ko mice displayed tactile allodynia (wt: 0.45 g; ko: 0.18 g; p<0.001), while responses to heat and cold stimuli and to muscle pressure were not different. No compensatory changes in the gene expression of tumor necrosis factor-alpha (TNF), IL-1β, IL-10, and IL-13 were found in the PNS and CNS of naïve IL-4 ko mice. However, IL-1β gene expression was stronger in the sciatic nerve of IL-4 ko mice (p<0.001) 28 days after CCI and only IL-4 ko mice had elevated IL-10 gene expression (p = 0.014). Remarkably, CCI induced TNF (p<0.01), IL-1β (p<0.05), IL-10 (p<0.05), and IL-13 (p<0.001) gene expression exclusively in the ipsilateral spinal cord of IL-4 ko mice. The compensatory overexpression of the anti-inflammatory and analgesic cytokines IL-10 and IL-13 in the spinal cord of IL-4 ko mice may explain the lack of genotype differences for pain behavior after CCI. Additionally, CCI induced gene expression of μ, κ, and δ opioid receptors in the contralateral cortex and thalamus of IL-4 ko mice, paralleled by fast onset of morphine analgesia, but not in wt mice. We conclude that a lack of IL-4 leads to mechanical sensitivity; the compensatory hyperexpression of analgesic cytokines and opioid receptors after CCI, in turn, protects IL-4 ko mice from enhanced pain behavior after nerve lesion.
A precious treasure in traditional Chinese medicine (TCM), acupuncture played a vital and irreplaceable role in contributing to people’s health in the thousands of years of Chinese history, and in 2010 was officially added to the “Representative List of the Intangible Cultural Heritage of Humanity” by the United Nations. Because of the side-effects of long-term drug therapy for pain, and the risks of dependency, acupuncture has been widely accepted as one of the most important alternative choice therapies for treating varieties of acute and chronic pain-related disorders. The clinical application and scientific mechanism research of acupuncture have therefore increased intensively in the last few decades. Besides hand acupuncture, other treatment approaches e.g. electroacupuncture (EA) have been widely accepted and applied as an important acupuncture-related technique for acupuncture analgesia (AA) research. The involvement of opioid peptides and receptors in acute AA has been shown via pre-EA application of opioid receptor/peptide antagonists. However, existing publications still cannot illuminate the answer to the following question: how does sustained antinociception happen by EA treatment? The hypothesis of opioid peptide-mediated tonic AA might be able to answer the question.
In the first part of this thesis, the institution of a reproducible acupuncture treatment model as well as the endogenous opioid-related mechanisms was demonstrated. An anatomically-based three-dimensional (3D) rat model was established to exhibit a digital true-to-life organism, accurate acupoint position and EA treatment protocol on bilateral acupoint GB-30 Huantiao. The optimal EA treatment protocol (100 Hz, 2-3 mA, 0.1 ms, 20 min) at 0 and 24 h after induction of inflammatory pain by complete Freund’s adjuvant (CFA) on conscious free-moving rats was then established. EA elicited significant sustained mechanical and thermal antinociception up to 144 h. Post-EA application of opioid receptors (mu opioid receptor, MOR; delta opioid receptor, DOR) antagonists naloxone (NLX) and naltrindole (NTI), or opioid peptide antibodies anti-beta-endorphin (anti-END), met-enkephalin (anti-ENK) or -dynorphin A (anti-DYN) could also block this effect at a late phase (96 h) of CFA post-EA, which suggested opioid-dependent tonic analgesia was produced by EA. Meanwhile, EA also reduced paw temperature and volume at 72-144 h post CFA indicating anti-inflammatory effects. Nociceptive thresholds were assessed by paw pressure threshold (Randall-Sellito) or paw withdrawal latency (Hargreaves) and an anti-inflammatory effect was evaluated by measurement of plantar temperature and volume of inflamed paw.
The second part of the thesis further suggests the correlation between the chemokine CXCL10 (= interferon-gamma inducible protein 10, IP-10) and opioid peptides in EA-induced antinociception. Based on a comprehensive Cytokine Array of 29 cytokines, targeted cytokines interleukin (IL)-1alpha, interleukin (IL)-1beta, tumor necrosis factor (TNF)-alpha, interleukin (IL)-4, interleukin (IL)-13, interferon (IFN)-gamma as well as CXCL10 were selected and quantified by enzyme-linked immunosorbent assay (ELISA), and real time reverse transcription-polymerase chain reaction (RT-PCR) quantification confirmed upregulation of CXCL10 mRNA at both 72 and 96 h. The following hyperalgesic assessment suggested the antinociceptive effect of CXCL10. The double immunostaining localizing opioid peptides with macrophages expressed the evident upregulation of CXCR3-receptor of CXCL10 in EA treated samples as well as the significant upregulation or downregulation of opioid peptides by repeated treatment of CXCL10 or antibody of CXCL10 via behavioral tests and immune staining. Subsequent immunoblotting measurements showed non-alteration of opioid receptor level by EA, indicating that the opioid receptors did not apparently contribute to AA in the present studies. In vitro, CXCL10 did not directly trigger opioid peptide END release from freshly isolated rat macrophages. This might implicate an indirect property of CXCL10 in vitro stimulating the opioid peptide-containing macrophages by requiring additional mediators in inflammatory tissue.
In summary, this project intended to explore the peripheral opioid-dependent analgesic mechanisms of acupuncture with a novel 3D treatment rat model and put forward new information to support the pivot role of chemokine CXCL10 in mediating EA-induced tonic antinociception via peripheral opioid peptides.
Heutzutage existieren verschiedene immunsuppressive Protokolle, die bei Patienten nach Nierentransplantation mit dem Ziel der Unterdrückung der immunologischen Abstoßungs-reaktion eingesetzt werden. Welche von diesen Protokollen aber seine Aufgabe am besten verwirklicht, ist bis jetzt noch offen geblieben. Das relativ neue Präparat MMF findet zu-nehmend im klinischen Alltag im Rahmen dieser Therapie seine Verwendung. In dieser Arbeit wurden die Funktionen regulatorischer T-Zellen aus Patienten nach Nierentrans-plantationen unter MMF basierter Immunsuppression untersucht. Sie wurden mit Hilfe verschiedener Verfahren mit dem Ziel charakterisiert, die günstigste immunsuppressive Kombination zu finden und ihre Wirkungen auf zellulärer Ebene zu analysieren. Insgesamt wurde festgestellt, dass die T-Zelllinien aus Patienten mit chronischer Abstoßung vom Th1-Zytokin-Profil und die aus stabilen Patienten vom Th2-Muster geprägt waren. Dies verdeutlicht die Rolle der Th1-Zellen bei der Induktion und Aufrechterhaltung der chroni-schen Abstoßung und die immunregulatorischen Eigenschaften der Th2-Zellen. Alle T-Zelllinien wiesen Spender-Peptid spezifische und signifikante Proliferationsaktivität, wo-bei die Antwort bei den Zelllinien aus chronischen Patienten viel höher ausfiel. Diese Tat-sache weist auf die besondere immunologische Aktivität der Th1-Zellen. Unter den T-Zelllinien aus stabilen Patienten unter Tacrolimus, MMF und Prednisolon wurden viel mehr CD4+CD25+ Zellen mit regulatorischen Eigenschaften beobachtet als bei stabilen Patienten unter anderen therapeutischen Kombinationen, was darauf hinweist, dass dieses Regime insbesondere die regulatorischen T-Zellen fördert. Tatsächlich hat die statistische Analyse des längerfristigen Verlaufs der Transplantatsituation von den Patienten aus dieser Studie gezeigt, dass unter Tacrolimus, MMF und Prednisolon der geringste Anteil an chro-nischen Abstoßungsreaktionen vorkam. Diese Tatsache könnte enorme Bedeutung für die Klinik haben, denn unsere Arbeit beweist erstmals auf zellulärer Ebene, dass gerade diese immunsuppressive Kombination die Toleranzmechanismen am stärksten fördert und somit am besten zum langzeitigen Transplantatüberleben beiträgt, wodurch sie in näherer Zu-kunft das Therapieregime der Wahl werden kann.
Die Wundheilung im Kolon ist ein wichtiges Thema in der Medizin, da sich dieser Prozess durch die besonderen Ausgangsbedingungen, wie etwa hohe Bakterienlast, ein hoher intraluminaler Druck und niedrigere Sauerstoffspannung von der viel untersuchten kutanen Wundheilung unterscheidet. Auch sind die Folgen einer Dehiszenz im Anastomosenbereich ungleich gravierender, besteht doch das Risiko einer Peritonitis, die mit hoher Letalität verbunden ist. Ziel dieser Arbeit war es, die komplikationslose Wundheilung über einen langen Zeitraum zu beobachten. Anhand des Verlaufs einer Vielzahl von für die Wundheilung wesentlichen Zytokinen sollte die Wundheilung am Kolon möglichst ausführlich untersucht werden. Im Rahmen meiner Fragestellung wurden 100 männliche Wistarratten unter anderem mit einer Anastomose am Übergang von Kolon sigmoideum zum Rektum versehen. Die Tiere waren in verschiedene Gruppen aufgeteilt und wurden je nach Gruppe zu einem der sechs verschiedenen Zeitpunkte (0, 3, 7, 14, 30 und 90 Tage post Operationem) getötet und die Anastomose wurde entnommen. Das Anastomosengewebe wurde für immunhistologische und ELISA Untersuchungen verwendet. Durch den langen Untersuchungszeitraum konnten nicht nur die initialen Phasen der Wundheilung, sondern auch die Phase der Bindegewebsbildung erfasst werden. Es wurden immunhistochemische Färbungen und ELISA-Analysen von verschiedenen proinflammatorischen (TNF-alfa, IFN-gamma), chemotaktischen (RANTES, MIP-2, MCP-1), angiogenetischen (VEGF, PDGF-B, FGF-2) und antiinflammatorischen (IL-10, IL-13) Zytokinen und TGF-beta1 durchgeführt. Dabei wurde eine insgesamt verzögerte Wundheilung festgestellt. Es zeigte sich eine wesentlich verlängerte inflammatorische Phase sowie eine verlängerte proliferative Phase. Erst von Tag 30 bis 90 kehrten die meisten Parameter wieder auf ein mehr oder minder normales Niveau zurück. Erwartungsgemäß waren die meisten histologisch positiven Zellen in der Anastomose selbst zu finden. Die Zellzahlen der Zellmarker ließen sich gut mit den Zytokinen in Einklang bringen. Jedoch ließen sich Zellzahlen und Zytokinkonzentration meist nicht korrelieren. Es traten mit IFN-gamma und RANTES zwei Zytokine auf, die im kutanen Modell nicht beobachtet wurden. IFN-gamma hemmt die meisten Zellen, die im Rahmen der proliferativen Phase benötigt werden und könnte ein Grund für die verlängerte inflammatorische Phase sein. Aus diesen Untersuchungen lässt sich schließen, dass die komplikationslose kolonische Wundheilung grundsätzlich mit der kutanen vergleichbar ist. Die Ergebnisse und Erkenntnisse aus dieser Arbeit werden jetzt als Grundlage für ein Modell mit erhöhter Dehiszenzwahrscheinlichkeit verwendet. Damit soll ein besseres und systematisches Verständnis für die Pathogenese der Anastomoseninsuffizienz gewonnen werden. So wird es möglich, auf histologischer Ebene und auf Proteinebene die Unterschiede zwischen komplikationsloser und komplikationsbehafteter Anastomosenheilung zu beobachten, sind die klinischen Folgen bei einer Leckage doch in vielen Fällen verheerend. Zudem wird es dann möglich sein, systematischer zu ergründen, wie etwa intraoperativ eingebrachte Zytokine oder zytokingetränkte Fäden das Wundmilieu verändern und beeinflussen.
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.
Immature or semi-mature dendritic cells (DCs) represent tolerogenic maturation stages that can convert naive T cells into Foxp3\(^{+}\) induced regulatory T cells (iTreg). Here we found that murine bone marrow-derived DCs (BM-DCs) treated with cholera toxin (CT) matured by up-regulating MHC-II and costimulatory molecules using either high or low doses of CT (CT\(^{hi}\), CT\(^{lo}\)) or with cAMP, a known mediator CT signals. However, all three conditions also induced mRNA of both isoforms of the tolerogenic molecule cytotoxic T lymphocyte antigen 2 (CTLA-2α and CTLA-2β). Only DCs matured under CT\(^{hi}\) conditions secreted IL-1β, IL-6 and IL-23 leading to the instruction of Th17 cell polarization. In contrast, CT\(^{lo}\)- or cAMP-DCs resembled semi-mature DCs and enhanced TGF-β-dependent Foxp3\(^{+}\) iTreg conversion. iTreg conversion could be reduced using siRNA blocking of CTLA-2 and reversely, addition of recombinant CTLA-2α increased iTreg conversion in vitro. Injection of CT\(^{lo}\)- or cAMP-DCs exerted MOG peptide-specific protective effects in experimental autoimmune encephalomyelitis (EAE) by inducing Foxp3\(^{+}\) Tregs and reducing Th17 responses. Together, we identified CTLA-2 production by DCs as a novel tolerogenic mediator of TGF-β-mediated iTreg induction in vitro and in vivo. The CT-induced and cAMP-mediated up-regulation of CTLA-2 also may point to a novel immune evasion mechanism of Vibrio cholerae.
Abstract
In the murine model of Leishmania major infection, resistance or susceptibility to the parasite has been associated with the development of a Th1 or Th2 type of immune response. Recently, however, the immunosuppressive effects of IL-10 have been ascribed a crucial role in the development of the different clinical correlates of Leishmania infection in humans. Since T cells and professional APC are important cellular sources of IL-10, we compared leishmaniasis disease progression in T cell-specific, macrophage/neutrophil-specific and complete IL-10-deficient C57BL/6 as well as T cell-specific and complete IL-10-deficient BALB/c mice. As early as two weeks after infection of these mice with L. major, T cell-specific and complete IL-10-deficient animals showed significantly increased lesion development accompanied by a markedly elevated secretion of IFN-γ or IFN-γ and IL-4 in the lymph nodes draining the lesions of the C57BL/6 or BALB/c mutants, respectively. In contrast, macrophage/neutrophil-specific IL-10-deficient C57BL/6 mice did not show any altered phenotype. During the further course of disease, the T cell-specific as well as the complete IL-10-deficient BALB/c mice were able to control the infection. Furthermore, a dendritic cell-based vaccination against leishmaniasis efficiently suppresses the early secretion of IL-10, thus contributing to the control of parasite spread. Taken together, IL-10 secretion by T cells has an influence on immune activation early after infection and is sufficient to render BALB/c mice susceptible to an uncontrolled Leishmania major infection.
Author Summary
The clinical symptoms caused by infections with Leishmania parasites range from self-healing cutaneous to uncontrolled visceral disease and depend not only on the parasite species but also on the type of the host's immune response. It is estimated that 350 million people worldwide are at risk, with a global incidence of 1–1.5 million cases of cutaneous and 500,000 cases of visceral leishmaniasis. Murine leishmaniasis is the best-characterized model to elucidate the mechanisms underlying resistance or susceptibility to Leishmania major parasites in vivo. Using T cell-specific and macrophage-specific mutant mice, we demonstrate that abrogating the secretion of the immunosuppressive cytokine IL-10 by T cells is sufficient to render otherwise susceptible mice resistant to an infection with the pathogen. The healing phenotype is accompanied by an elevated specific inflammatory immune response very early after infection. We further show that dendritic cell-based vaccination against leishmaniasis suppresses the early secretion of IL-10 following challenge infection. Thus, our study unravels a molecular mechanism critical for host immune defense, aiding in the development of an effective vaccine against leishmaniasis.
Das Ziel der Arbeit war, die Einflüsse verschiedener Zytokine bzw. Wachstumsfaktoren (unter anderem Stammzellfaktor (SCF), Thrombopoetin (TPO), Flt3-Ligand (FL-3), Interleukin-3 (IL-3), Tumornekrosefaktor-a (TNF-a) und Granulozyten-Makrophagen-Stimulierender-Faktor (GM-CSF)) auf humane hämatopoetische, CD34-positive Stammzellen (HSZ) zu evaluieren. Eine relativ hohe Zellamplifikation bei gleichzeitig geringer Differenzierungsinduktion ermöglichte eine Kombination der Zytokine TSF, SCF und FL-3. Eine gezielte Differenzierung von CD14-positiven, monozytären Zellen gelang am besten mit einer Kombination der Zytokine TSF, SCF, FL-3 und IL-3. Für die Generierung von dendritischen Zellen eignete sich eine Zytokinkombination aus IL-4, TNF-a und GM-CSF. Im zweiten Teil der Arbeit wurde das Verhalten von Philadelphiachromosom-positiven CML-Stammzellen (CML = chronisch myeloische Leukämie) im Vergleich zu benignen HSZ, analog zu den obigen Gesichtspunkten, evaluiert. Die CML-Stammzellen zeigten bei Inkubation mit Zwei- und Mehrfachzytokinkombinationen eine z.T. deutlich höhere Amplifikation als die Vergleichsansätze mit benignen Zellen. In den Mehrfachzytokinansätzen fand sich im zeitlichen Verlauf darüberhinaus eine größere, verbleibende CD34-positive Zell-Population als in den benignen Vergleichsansätzen. Bei der zielgerichteten dendritischen Zelldifferenzierung verhielten sich die CML-Stammzellen ähnlich wie die benigen Zellen, wobei die Differenzierung in den Kulturen zu einem späteren Zeitpunkt auftrat. Ein Unterschied gegenüber den benignen Ansätzen zeigte sich bei den CML-Stammzellen in einer nahezu fehlenden Differenzierungsfähigkeit in CD14-positive, monozytäre Zellen. Dieser Differenzierungsblock ließ sich jedoch durch eine Kombination der verwendeten Zytokine mit Vitamin D3 überwinden.
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.