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BACKGROUND:
The etiology of multiple sclerosis (MS) has remained unclear, but a causative contribution of factors outside the central nervous system (CNS) is conceivable. It was recently suggested that gut bacteria trigger the activation of CNS-reactive T cells and the development of demyelinative disease.
METHODS:
C57BL/6 (B6) mice were kept either under specific pathogen free or conventional housing conditions, immunized with the myelin basic protein (MBP)-proteolipid protein (PLP) fusion protein MP4 and the development of EAE was clinically monitored. The germinal center size of the Peyer's patches was determined by immunohistochemistry in addition to the level of total IgG secretion which was assessed by ELISPOT. ELISPOT assays were also used to measure MP4-specific T cell and B cell responses in the Peyer's patches and the spleen. Ear swelling assays were performed to determine the extent of delayed-type hypersensitivity reactions in specific pathogen free and conventionally housed mice.
RESULTS:
In B6 mice that were actively immunized with MP4 and kept under conventional housing conditions clinical disease was significantly attenuated compared to specific pathogen free mice. Conventionally housed mice displayed increased levels of IgG secretion in the Peyer's patches, while the germinal center formation in the gut and the MP4-specific TH17 response in the spleen were diminished after immunization. Accordingly, these mice displayed an attenuated delayed type hypersensitivity (DTH) reaction in ear swelling assays.
CONCLUSIONS:
The data corroborate the notion that housing conditions play a substantial role in the induction of murine EAE and suggest that the presence of gut bacteria might be associated with a decreased immune response to antigens of lower affinity. This concept could be of importance for MS and calls for caution when considering the therapeutic approach to treat patients with antibiotics."
Background
Regulatory CD4\(^+\)CD25\(^+\)FoxP3\(^+\) T cells (Treg) are a subgroup of T lymphocytes involved in maintaining immune balance. Disturbance of Treg number and impaired suppressive function of Treg correlate with Parkinson’s disease severity. Superagonistic anti-CD28 monoclonal antibodies (CD28SA) activate Treg and cause their expansion to create an anti-inflammatory environment.
Methods
Using the AAV1/2-A53T-α-synuclein Parkinson’s disease mouse model that overexpresses the pathogenic human A53T-α-synuclein (hαSyn) variant in dopaminergic neurons of the substantia nigra, we assessed the neuroprotective and disease-modifying efficacy of a single intraperitoneal dose of CD28SA given at an early disease stage.
Results
CD28SA led to Treg expansion 3 days after delivery in hαSyn Parkinson’s disease mice. At this timepoint, an early pro-inflammation was observed in vehicle-treated hαSyn Parkinson’s disease mice with elevated percentages of CD8\(^+\)CD69\(^+\) T cells in brain and increased levels of interleukin-2 (IL-2) in the cervical lymph nodes and spleen. These immune responses were suppressed in CD28SA-treated hαSyn Parkinson’s disease mice. Early treatment with CD28SA attenuated dopaminergic neurodegeneration in the SN of hαSyn Parkinson’s disease mice accompanied with reduced brain numbers of activated CD4\(^+\), CD8\(^+\) T cells and CD11b\(^+\) microglia observed at the late disease-stage 10 weeks after AAV injection. In contrast, a later treatment 4 weeks after AAV delivery failed to reduce dopaminergic neurodegeneration.
Conclusions
Our data indicate that immune modulation by Treg expansion at a timepoint of overt inflammation is effective for treatment of hαSyn Parkinson’s disease mice and suggest that the concept of early immune therapy could pose a disease-modifying option for Parkinson’s disease patients.
To promote cancer research and to develop innovative therapies, refined pre-clinical mouse tumor models that mimic the actual disease in humans are of dire need. A number of neoplasms along the B cell lineage are commonly initiated by a translocation recombining c-myc with the immunoglobulin heavy-chain gene locus. The translocation is modeled in the C.129S1-Ighatm1(Myc)Janz/J mouse which has been previously engineered to express c-myc under the control of the endogenous IgH promoter. This transgenic mouse exhibits B cell hyperplasia and develops diverse B cell tumors. We have isolated tumor cells from the spleen of a C.129S1-Ighatm1(Myc)Janz/J mouse that spontaneously developed a plasmablastic lymphoma-like disease. These cells were cultured, transduced to express eGFP and firefly luciferase, and gave rise to a highly aggressive, transplantable B cell lymphoma cell line, termed IM380. This model bears several advantages over other models as it is genetically induced and mimics the translocation that is detectable in a number of human B cell lymphomas. The growth of the tumor cells, their dissemination, and response to treatment within immunocompetent hosts can be imaged non-invasively in vivo due to their expression of firefly luciferase. IM380 cells are radioresistant in vivo and mice with established tumors can be allogeneically transplanted to analyze graft-versus-tumor effects of transplanted T cells. Allogeneic hematopoietic stem cell transplantation of tumor-bearing mice results in prolonged survival. These traits make the IM380 model very valuable for the study of B cell lymphoma pathophysiology and for the development of innovative cancer therapies.
Die Reifung, Differenzierung und Funktion von Lymphozyten wird maßgeblich von aktivierenden und inhibitorischen Zelloberflächenrezeptoren reguliert. "Killer cell Lectin-like receptor G1" (KLRG1) ist ein Typ-II-Transmembranprotein, dessen Expression auf Subpopulationen von T-Lymphozyten und Natürlichen Killerzellen beschränkt ist. Die vorliegende Arbeit hatte zum Ziel, die differentielle Expression und mögliche Funktion von KLRG1 auf diesen Zellen im Maussystem zu charakterisieren. Mit Hilfe zellbiologischer Untersuchungsmethoden konnte gezeigt werden, dass die KLRG1-Expressionsfrequenz mit dem Reifegrad der Zellen korreliert. Frühere Beobachtungen, wonach KLRG1 durch Erkennung eigener Klasse-I-Moleküle des Haupthistokompatibilitätskomplexes (MHC) über inhibitorische Rezeptoren der Ly49-Familie induziert wird, konnten auf klassische Klasse-I-Moleküle und neue Ly49-Familienmitglieder ausgeweitet werden. Ferner belegen Daten dieser Arbeit, dass reife NK-Zellen die KLRG1-Expressionsfrequenz in verschiedenen lymphoiden Organen dem Klasse-I-Niveau der umgebenden Zellen anpassen können und dass T- und B-Lymphozyten möglicherweise eine zentrale Rolle hierbei spielen. Somit stellt KLRG1 einen NK-Zellrezeptor dar, dessen Expression durch Ly49-Rezeptorengagement dynamisch reguliert wird. Es ist möglich, dass KLRG1 kompensatorische (ko-)inhibitorische Eigenschaften besitzt, die für die Aufrechterhaltung der Selbsttoleranz von NK-Zellen von Bedeutung sind. Unter den CD8-T-Zellen identifiziert ein polyklonales abT-Zellrezeptorrepertoire und die Expression von CD8 als ab-Heterodimer den 2-3%igen Anteil an KLRG1+ Zellen als konventionelle T-Zellen thymischen Ursprungs. Umfangreiche phänotypische und funktionelle Analysen ergaben, dass KLRG1-exprimierende CD8-Zellen sich aus ca. 20% proinflammatorischer Effektorzellen und ca. 80% Gedächtniszellen zusammensetzen. Aufgrund von Daten der Arbeitsgruppe Pircher scheint das Zellteilungsvermögen letzterer ausgeschöpft zu sein. Demzufolge markiert KLRG1 eine neue Subpopulation von CD8-T-Zellen, der sowohl Effektorzellen, als auch "replikativ seneszente" Gedächtniszellen angehören. Abschließende Untersuchungen ergaben, dass KLRG1 interessanterweise auch von 1-2% der CD4+ T-Zellen exprimiert wird und dass die KLRG1+ CD4-T-Zellen zum Großteil CD25 koexprimieren. Funktionelle Anschlußexperimente zeigten, dass es sich bei diesen Zellen um regulatorische T-Zellen handelt. Zusammenfassend kennzeichnet KLRG1-Expression eine Subpopulationen von NK-Zellen, die körpereigene Zellen über Klasse-I erkennen können, eine Untergruppe von Effektor- und seneszenten CD8-T-Zellen sowie neuartige regulatorische CD4-T-Zellen.
Peripheral T cell lymphomas (PTCLs) are associated with a poor prognosis due to often advanced disease at the time of diagnosis and due to a lack of efficient therapeutic options. Therefore, appropriate animal models of PTCL are vital to improve clinical management of this disease. Here, we describe a monoclonal CD8\(^+\) CD4\(^−\) αβ T cell receptor Vβ2\(^+\) CD28\(^+\) T cell lymphoma line, termed T8-28. T8-28 cells were isolated from an un-manipulated adult BALB/c mouse housed under standard pathogen-free conditions. T8-28 cells induced terminal malignancy upon adoptive transfer into syngeneic BALB/c mice. Despite intracellular expression of the cytotoxic T cell differentiation marker granzyme B, T8-28 cells appeared to be defective with respect to cytotoxic activity as read-out in vitro. Among the protocols tested, only addition of interleukin 2 in vitro could partially compensate for the in vivo micro-milieu in promoting growth of the T8-28 lymphoma cells.
Despite recent therapeutic advances the prognosis of heart failure remains poor. Recent research suggests that heart failure is a heterogeneous syndrome and that many patients have stimulating auto-antibodies directed against the second extracellular loop of the \(β_1\) adrenergic receptor \((β_1EC2)\). In a human-analogous rat model such antibodies cause myocyte damage and heart failure. Here we used this model to test a novel antibody-directed strategy aiming to prevent and/or treat antibody-induced cardiomyopathy. To generate heart failure, we immunised n = 76/114 rats with a fusion protein containing the human β1EC2 (amino-acids 195–225) every 4 weeks; n = 38/114 rats were control-injected with 0.9% NaCl. Intravenous application of a novel cyclic peptide mimicking \(β_1EC2\) (\(β_1EC2-CP\), 1.0 mg/kg every 4 weeks) or administration of the \(β_1-blocker\) bisoprolol (15 mg/kg/day orally) was initiated either 6 weeks (cardiac function still normal, prevention-study, n = 24 (16 treated vs. 8 untreated)) or 8.5 months after the 1st immunisation (onset of cardiomyopathy, therapy-study, n = 52 (40 treated vs. 12 untreated)); n = 8/52 rats from the therapy-study received \(β_1EC2-CP/bisoprolol\) co-treatment. We found that \(β_1EC2-CP\) prevented and (alone or as add-on drug) treated antibody-induced cardiac damage in the rat, and that its efficacy was superior to mono-treatment with bisoprolol, a standard drug in heart failure. While bisoprolol mono-therapy was able to stop disease-progression, \(β_1EC2-CP\) mono-therapy -or as an add-on to bisoprolol- almost fully reversed antibody-induced cardiac damage. The cyclo¬peptide acted both by scavenging free \(anti-β_1EC2-antibodies\) and by targeting \(β_1EC2\)-specific memory B-cells involved in antibody-production. Our model provides the basis for the clinical translation of a novel double-acting therapeutic strategy that scavenges harmful \(anti-β_1EC2-antibodies\) and also selectively depletes memory B-cells involved in the production of such antibodies. Treatment with immuno-modulating cyclopeptides alone or as an add-on to \(β_1\)-blockade represents a promising new therapeutic option in immune-mediated heart failure.
By promoting ceramide release at the cytosolic membrane leaflet, the neutral sphingomyelinase 2 (NSM) is capable of organizing receptor and signalosome segregation. Its role in T cell receptor (TCR) signaling remained so far unknown. We now show that TCR-driven NSM activation is dispensable for TCR clustering and initial phosphorylation, but of crucial importance for further signal amplification. In particular, at low doses of TCR stimulatory antibodies, NSM is required for Ca\(^{2+}\) mobilization and T cell proliferation. NSM-deficient T cells lack sustained CD3ζ and ZAP-70 phosphorylation and are unable to polarize and stabilize their microtubular system. We identified PKCζ as the key NSM downstream effector in this second wave of TCR signaling supporting dynamics of microtubule-organizing center (MTOC). Ceramide supplementation rescued PKCζ membrane recruitment and MTOC translocation in NSM-deficient cells. These findings identify the NSM as essential in TCR signaling when dynamic cytoskeletal reorganization promotes continued lateral and vertical supply of TCR signaling components: CD3ζ, Zap70, and PKCζ, and functional immune synapses are organized and stabilized via MTOC polarization.
The hematopoietic-specific Rho-family GTP exchange factor (GEF) Vav-1 is a regulator of lymphocyte antigen receptor signaling and mediates normal maturation and activation of B and T cells. Recent findings suggest that Vav-1 also forms part of signaling pathways required for natural and antibody dependent cellular cytotoxicity (ADCC) of human NK cells. In this study, I show that Vav-1 is also expressed in murine NK cells. Vav-1-/- mice had normal numbers of splenic NK cells, and these displayed a similar expression profile of NK cell receptors as cells from wild type mice. Unexpectedly, IL-2-activated Vav-1-/- NK cells retained normal ADCC. Fc-receptor mediated activation of ERK, JNK, and p38 was also normal. In contrast, Vav-1-/- NK cells exhibited reduced natural cytotoxicity against EL4, C4.4.25, RMA and RMA/S. Together, these results demonstrate that Vav-1 is dispensable for mainstream NK cell development, but is required for NK cell natural cytotoxicity. Vav-2, a protein homologous to Vav-1 has also been implicated in NK cell functions. However, NK cells from Vav-2-/- mice have normal cytotoxic activities and NK cells that lack both Vav-1 and Vav-2 exhibit similar defect as Vav-1-/- cells. Thus Vav-2 has no apparent function in the development and the activation of NK cells. Although NK cell development is normal in Vav-1-/- mice, their numbers of NKT cells were dramatically diminished. Furthermore, NKT cells from Vav-1 mutant mice failed to produce IL-4 and IFNg following in vivo CD3 stimulation. A similar loss of NKT cells was observed in Vav-1-/-Vav-2-/- mice, but not in Vav-2-/- mice, suggesting that only Vav-1, and not Vav-2, is an essential regulator of NKT cell development and NK cell cytotoxicity. Similar to Vav-1, Lsc is a Rho GEF that is expressed specifically in the hematopoietic system. It contains a regulator of G-protein signaling (RGS) domain which negatively regulates the Ga12 and Ga13 subunits of G-protein coupled receptors (GPCRs). This study shows that NK and NKT cell development are normal in Lsc-/- mice. However, NK cells from mutant mice display enhanced cytotoxic responses towards a panel of tumor cells. These data implicate for the first time a RGS-containing Rho GEF in cytotoxic responses and suggest that Lsc down-modulate NK cell activation.
Multiple activities are ascribed to the cytokine tumor necrosis factor (TNF) in health and disease. In particular, TNF was shown to affect carcinogenesis in multiple ways. This cytokine acts via the activation of two cell surface receptors, TNFR1, which is associated with inflammation, and TNFR2, which was shown to cause anti-inflammatory signaling. We assessed the effects of TNF and its two receptors on the progression of pancreatic cancer by in vivo bioluminescence imaging in a syngeneic orthotopic tumor mouse model with Panc02 cells. Mice deficient for TNFR1 were unable to spontaneously reject Panc02 tumors and furthermore displayed enhanced tumor progression. In contrast, a fraction of wild type (37.5%), TNF deficient (12.5%), and TNFR2 deficient mice (22.2%) were able to fully reject the tumor within two weeks. Pancreatic tumors in TNFR1 deficient mice displayed increased vascular density, enhanced infiltration of CD4+ T cells and CD4+ forkhead box P3 (FoxP3)+ regulatory T cells (Treg) but reduced numbers of CD8+ T cells. These alterations were further accompanied by transcriptional upregulation of IL4. Thus, TNF and TNFR1 are required in pancreatic ductal carcinoma to ensure optimal CD8+ T cell-mediated immunosurveillance and tumor rejection. Exogenous systemic administration of human TNF, however, which only interacts with murine TNFR1, accelerated tumor progression. This suggests that TNFR1 has basically the capability in the Panc02 model to trigger pro-and anti-tumoral effects but the spatiotemporal availability of TNF seems to determine finally the overall outcome.
T cell activation represents a double-edged sword in atherogenesis, as it promotes both pro-inflammatory T cell activation and atheroprotective Foxp3(+) regulatory T cell (Treg) responses. Here, we investigated the role of the co-inhibitory receptor programmed cell death-1 (PD-1) in T cell activation and CD4(+) T cell polarization towards pro-atherogenic or atheroprotective responses in mice. Mice deficient for both low density lipoprotein receptor and PD-1 (Ldlr(-/-)Pd1(-/-)) displayed striking increases in systemic CD4(+) and CD8(+) T cell activation after 9 weeks of high fat diet feeding, associated with an expansion of both pro-atherogenic IFNγ-secreting T helper 1 cells and atheroprotective Foxp3+ Tregs. Importantly, PD-1 deficiency did not affect Treg suppressive function in vitro. Notably, PD-1 deficiency exacerbated atherosclerotic lesion growth and entailed a massive infiltration of T cells in atherosclerotic lesions. In addition, aggravated hypercholesterolemia was observed in Ldlr(-/-)Pd1(-/-) mice. In conclusion, we here demonstrate that although disruption of PD-1 signaling enhances both pro- and anti-atherogenic T cell responses in Ldlr(-/-) mice, pro-inflammatory T cell activation prevails and enhances dyslipidemia, vascular inflammation and atherosclerosis.
Durch die im Labor der AG Topp standardisierte Verfahren konnten im Rahmen dieser Arbeit stabile T Zell Linien aus primär humanen CMV spezifischen T Zellen und CMV spezifischen T Zellen mit chimärischen Rezeptoren hergestellt werden. Die Anzahl der chimärischen Rezeptoren auf den unterschiedlichen T Zellinien ist nicht signifikant unterschiedlich und beträgt ca. 17000 Rezeptoren pro Zelle. Bei der Überprüfung des Lyseverhaltens CMV spezifischer T Zellen gegenüber CMV spezifischer T Zellen transduziert mit einem chimärischen Rezeptor zeigt sich das gleiche Lyseverhalten. Um die zeitliche Dynamik dieses Verhaltens besser darzustellen, wurde ein FACS basierter Lysierungsversuch selbstständig entwickelt und etabliert. Somit konnte herausgestellt werden, dass das Lyseverhalten der T Zelllinien sowohl der CMV spezifischen T Zellen als auch das der Erst- und Zweitgeneration- T Zelllinien CAR CD19z und CAR CD19/28z vergleichbar war. Alle genannten Zelllinien lysieren ihre Targetzellen sowohl in der Quantität als auch in der zeitlichen Dynamik vergleichbar. Dies ist die einzige Gemeinsamkeit der verglichenen T Zell Aktivierungssysteme. In allen anderen funktionellen Versuchen ist die Aktivierung der T Zellen über einen chimärischen Rezeptor dem der physiologischen Aktivierung über den T Zell Rezeptor unterlegen. Der Proliferationsversuch mit CFSE zeigt eindeutig, dass nur die T Zellen, die über den TCR aktiviert werden, das Potential haben, sich zu teilen. Die T Zellen, die über den CAR sowohl der ersten als auch der zweiten Generation aktiviert werden, teilen sich nicht. Der Defekt der CAR T Zellen zeigt sich auch in der Hochregulation von CD25, einem Aktivierungsmarker für T Zellen. Die T Zellen, die durch die chimärischen Rezeptoren sowohl der ersten als auch der zweiten Generation aktiviert werden, regulieren CD25 nicht so stark nach oben wie die T Zellen, die physiologisch durch den TCR aktiviert werden. Diese Minderaktivierung spiegelt sich auch in der Zytokinproduktion wieder. Auch hier zeigt sich die unvollständige Aktivierung der CAR T Zellen. In der intrazellulären Zytokinmessung sieht man, dass bei CAR T Zellen der ersten und zweiten Generation zum einen die Einzelzellen weniger IFNy produzieren, zum anderen die Gesamtzahl der Zellen, die Zytokine produzieren, weniger ist als im Vergleich zur TCR Aktivierung. Dieses Phänomen der defizienten Aktivierung und der funktionellen Defekte von CAR T Zellen ist bekannt. Dies konnte noch einmal unter standardisierten und kontrollierten Bedingungen bestätigt werden. Durch die relativ neue Methode der durchflusszytometrischen Bead Technologie konnte dies nun zum ersten Mal realisiert werden. Es zeigte sich, dass ein signifikanter Unterschied zwischen den verschiedenen Aktivierungsmodi der T Zellen besteht. Eine physiologische Aktivierung von T Zellen führt zu einer höheren Maximum-Phosphorylierung als eine Aktivierung über den Erstgeneration CAR. Der signifikante Unterschied zeigt sich bei den MAP Kinasen ERK, JNK und p38. Somit ist dies ein Hinweis, dass die Signaltransduktion auf breiter Ebene aufgrund des alleinigen Vorhandenseins der Zeta Kette bei den CAR CD19z T Zellen, defizient ist und nicht ausreicht für eine volle Aktivierung, die eine volle Funktionalität der T Zelle nach sich ziehen würde. Diese unzureichende Aktivierung soll durch die kostimulatorische Komponente CD28 beim Zweitgenerationrezeptor CAR CD19/28z aufgehoben werden. In der Proliferation, Zytokineproduktion und den Aktivierungsmarkern zeigt sich keine Verbesserung im Vergleich zum Erstgenerationrezeptor bei CMV spezifischen T Zellen. Dieses Ergebnis wird bestätigt und korreliert damit, dass es keinen Unterschied in der maximalen Phosphorylierung von ERK, JNK und p38 zwischen Erstgeneration CAR CD19z und Zweitgeneration CAR CD19/28z gibt. Somit ist dieses System geeignet, um aus dem Phosphorylierungsstatus von MAP Kinasen von CAR T Zellen auf die Funktionalität dieser T Zellen zu schließen.
Myeloid-derived suppressor cells (MDSCs) represent a major population controlling T cell immune responses. However, little is known about their molecular requirements for homing and T cell interaction to mediate suppression. Here, we investigated the functional role of the homing and collagen IV receptor VLA-1 (α1β1-integrin) on in vitro GM-CSF generated murine MDSCs from wild-type (WT) and CD49a/α1-integrin (Itga1\(^{−/−}\)) gene-deficient mice. Here, we found that effector (Teff) but not naive (Tn) CD4\(^+\) T cells express VLA-1 and monocytes further up-regulated their expression after culture in GM-CSF when they differentiated into the monocytic subset of resting MDSCs (R-MDSCs). Subsequent activation of R-MDSCs by LPS+IFN-γ (A-MDSCs) showed increased in vitro suppressor potential, which was independent of VLA-1. Surprisingly, VLA-1 deficiency did not influence A-MDSC motility or migration on collagen IV in vitro. However, interaction times of Itga1\(^{−/−}\) A-MDSCs with Teff were shorter than with WT A-MDSCs on collagen IV but not on fibronectin substrate in vitro. After injection, A-MDSCs homed to the splenic red pulp where they co-localized with Teff and showed immediate suppression already after 6 h as shown by inhibition of T cell proliferation and induction of apoptosis. Injection of A-MDSCs from Itga1\(^{−/−}\) mice showed equivalent homing into the spleen but a reduced suppressive effect. Interaction studies of A-MDSCs with Teff in the subcapsular red pulp with intravital two-photon microscopy revealed also here that MDSC motility and migration parameters were not altered by VLA-1 deficiency, but the interaction times with Teff were reduced. Together, our data point to a new role of VLA-1 adhesion to collagen IV as a prerequisite for extended contact times with Teff required for suppression.
In der vorliegenden Arbeit werden Studien zu verschiedenen Aspekten der Stimulation von humanen Vg9Vd2-T-Lymphozyten vorgestellt. Ein Schwerpunkt war die Charakterisierung der Erkennung von Bisphosphonaten durch Vg9Vd2-T-Zellen. Weder die Alkylmonophosphonate Ethyl- und Propylphosphonat noch 3-Aminopropylphosphonat bewirkten eine Stimulation von Vg9Vd2 T-Lymphozyten. Anscheinend ist also für die gd-T-Zell-stimulierende Aktivität von Aminobisphosphonaten das Vorhandensein sowohl der Methylenbisphosphonat-Gruppe als auch des Amino-Stickstoffs entscheidend. Es wurden verschiedene Pamidronat-Derivate untersucht, die sich durch Substituenten am Stickstoffatom unterscheiden. Die meisten dieser Verbindungen konnten Vg9Vd2-T-Zellen aktivieren, die Art der Substituenten hatte aber großen Einfluss darauf, welche Konzentration des jeweiligen Bisphosphonats für eine gd-T-Zell-Antwort nötig war. Besonders negativ auf die gd-T-Zell-stimulierende Aktivität wirkte sich aus, wenn das Stickstoffatom Teil einer Säureamidbindung war. Das lässt darauf schließen, dass die Gegenwart einer positiven Ladung (durch Protonierung des Stickstoffatoms) von Bedeutung für die Bioaktivität dieser Verbindungen ist. Beim Vergleich verschiedener Bisphosphonate mit stickstoffenthaltenden Heteroaromaten (Fünfringe mit ein bis drei Stickstoffatomen) zeigte sich, dass sowohl die Position des basischen Stickstoffatoms im Ring als auch Art und Position von Ringsubstituenten Einfluss auf deren gd-T-Zell-stimulierende Aktivität haben. Es ergaben sich Hinweise, dass sich eine gesteigerte Neigung eine positive Ladung in der Seitenkette zu tragen bei diesen Verbindungen genau wie bei Aminobisphosphonaten günstig auf das gd-T-Zell-aktivierende Potential auswirkt. Durch Behandlung mit Zoledronat wurde die monozytäre Zelllinie THP-1 stimulierend für Vg9Vd2-T-Zellen. Auch weitere Zelllinien und Lymphozyten des peripheren Bluts (PBL) konnten nach Vorinkubation mit Zoledronat Vg9Vd2-T-Zellen aktivieren. Dabei genügten bei den PBL deutlich geringere Zoledronat-Konzentrationen um einen Effekt zu erzielen als bei den untersuchten Zelllinien. Für die indirekte Stimulation von Vg9Vd2-T-Zellen durch Zoledronat mittels THP-1 Zellen oder PBL war Zell-Zell-Kontakt zwischen den präsentierenden Zellen und den gd-T-Zellen Voraussetzung. Die Anwesenheit von alkalischer Phosphatase hatte keine Auswirkungen auf die gd-T-Zell-Aktivierung durch Zoledronat. Dies spricht dafür, dass Vg9Vd2-T-Zellen Oberflächenstrukturen auf anderen Zellen erkennen und dass freie Phosphoantigene bei der gd-T-Zell-Stimulierung durch Stickstoff enthaltende Bisphosphonate keine Rolle spielen. Wurde die Vorinkubation von THP-1 Zellen mit Zoledronat in Gegenwart von Saponin, einem Detergenz das die Durchlässigkeit der Zellmembran reversibel erhöht, durchgeführt, reichten deutlich niedrigere Konzentrationen des Bisphosphonats aus, um die THP-1 Zellen stimulierend für gd-T-Lymphozyten zu machen. Das ist ein Hinweis darauf, dass für die Aktivierung von Vg9Vd2-T-Zellen durch Zoledronat intrazelluläre Vorgänge in den „antigenpräsentierenden“ Zellen verantwortlich sein könnten. Beim Vergleich verschiedener N-BPs hinsichtlich ihrer Aktivität gegenüber gd-T-Zellen und ihrer antiresorptiven Potenz ergab sich eine erstaunlich gute Korrelation. Dies könnte darauf hinweisen, dass beide Effekte durch den gleichen Mechanismus – die Hemmung der Farnesylpyrophosphat-Synthase – zustande kommen. Die Gegenwart von Farnesol oder Geranylgeraniol während der Vorinkubation von THP-1 Zellen mit Zoledronat verringerte deren gd-T-Zell-stimulierendes Potential nicht, so dass vielleicht nicht die Verarmung an längerkettigen Isoprenoiden sondern die Anreicherung von Vorläufern zu Veränderungen in den Zellen führt, die diese schließlich erkennbar für Vg9Vd2-T-Zellen machen. Zusätzlich wurden im Rahmen dieser Arbeit einige Versuche zu bakteriellen Phosphoantigenen durchgeführt. Mittels einer selektiven HPLC-MS/MS-Methode gelang uns in einer E. coli-Probe der Nachweis eines Vg9Vd2-T-Zell-stimulierenden Pyrophosphats mit der molekularen Masse von 3-Formyl-1-butyl-pyrophosphat, einem Phosphoantigen das in Mykobakterien gefunden worden war (Belmant und Mitarbeiter, 1999). Eine weitere Strukturaufklärung war aufgrund der äußerst geringen Konzentration des Phosphoantigens nicht möglich. 2-C-Methyl-D-erythritol-2,4-cyclodiphosphat (MEcPP) ist ein Zwischenprodukt des 2-C-Methylerythritol-4-phosphat- (MEP) Wegs der Isoprenoidbiosynthese. Es wird in manchen Bakterien – z. B. Corynebacterium ammoniagenes – bei oxidativem Stress verursacht durch Benzylviologen (BV) akkumuliert. Es konnte gezeigt werden, dass Extrakte aus C. ammoniagenes, die in Gegenwart von BV kultiviert wurden, in einem höherem Maße Vg9Vd2-T-Zellen stimulieren als Proben von Bakterien, die ohne BV-Zusatz wuchsen; MEcPP wirkte selbst nicht als Phosphoantigen. Dies war ein weiterer Hinweis darauf, dass bakterielle Phosphoantigene mit dem MEP-Weg assoziiert sind.
Background
Natural surfactant preparations, commonly isolated from porcine or bovine lungs, are used to treat respiratory distress syndrome in preterm infants. Besides biophysical effectiveness, several studies have documented additional immunomodulatory properties. Within the near future, synthetic surfactant preparations may be a promising alternative. CHF5633 is a new generation reconstituted synthetic surfactant preparation with defined composition, containing dipalmitoyl-phosphatidylcholine, palmitoyl-oleoyl-phosphatidylglycerol and synthetic analogs of surfactant protein (SP-) B and SP-C. While its biophysical effectiveness has been demonstrated in vitro and in vivo, possible immunomodulatory abilities are currently unknown.
Aim
The aim of the current study was to define a potential impact of CHF5633 and its single components on pro- and anti-inflammatory cytokine responses in human CD4\(^+\) lymphocytes.
Methods
Purified human CD4\(^+\) T cells were activated using anti CD3/CD28 antibodies and exposed to CHF5633, its components, or to the well-known animal-derived surfactant Poractant alfa (Curosurf®). Proliferative response and cell viability were assessed using flow cytometry and a methylthiazolyldiphenyltetrazolium bromide colorimetric assay. The mRNA expression of IFNγ, IL-2, IL-17A, IL-22, IL-4, and IL-10 was measured by quantitative PCR, while intracellular protein expression was assessed by means of flow cytometry.
Results
Neither CHF5633 nor any of its phospholipid components with or without SP-B or SP-C analogs had any influence on proliferative ability and viability of CD4\(^+\) lymphocytes under the given conditions. IFNγ, IL-2, IL-17A, IL-22, IL-4, and IL-10 mRNA as well as IFNγ, IL-2, IL-4 and IL-10 protein levels were unaffected in both non-activated and activated CD4+ lymphocytes after exposure to CHF5633 or its constituents compared to non-exposed controls. However, in comparison to Curosurf®, expression levels of anti-inflammatory IL-4 and IL-10 mRNA were significantly increased in CHF5633 exposed CD4\(^+\) lymphocytes.
Conclusion
For the first time, the immunomodulatory capacity of CHF5633 on CD4\(^+\) lymphocytes was evaluated. CHF5633 did not show any cytotoxicity on CD4\(^+\) cells. Moreover, our in vitro data indicate that CHF5633 does not exert unintended pro-inflammatory effects on non-activated and activated CD4+ T cells. As far as anti-inflammatory cytokines are concerned, it might lack an overall reductive ability in comparison to animal-derived surfactants, potentially leaving pro- and anti-inflammatory cytokine response in balance.
Parkinson’s disease (PD) is a progressive and debilitating chronic disease that affects more than six million people worldwide, with rising prevalence. The hallmarks of PD are motor deficits, the spreading of pathological α-synuclein clusters in the central nervous system, and neuroinflammatory processes. PD is treated symptomatically, as no causally-acting drug or procedure has been successfully established for clinical use. Various pathways contributing to dopaminergic neuron loss in PD have been investigated and described to interact with the innate and adaptive immune system. We discuss the possible contribution of interconnected pathways related to the immune response, focusing on the pathophysiology and neurodegeneration of PD. In addition, we provide an overview of clinical trials targeting neuroinflammation in PD.
Atopic dermatitis (AD) is one of the most prevalent inflammatory disease among non-fatal skin diseases, affecting up to one fifth of the population in developed countries. AD is characterized by recurrent pruritic and localized eczema with seasonal fluctuations. AD initializes the phenomenon of atopic march, during which infant AD patients are predisposed to progressive secondary allergies such as allergic rhinitis, asthma, and food allergies. The pathophysiology of AD is complex; onset of the disease is caused by several factors, including strong genetic predisposition, disrupted epidermal barrier, and immune dysregulation. AD was initially characterized by defects in the innate immune system and a vigorous skewed adaptive Th2 response to environmental agents; there are compelling evidences that the disorder involves multiple immune pathways. Symptomatic palliative treatment is the only strategy to manage the disease and restore skin integrity. Researchers are trying to more precisely define the contribution of different AD genotypes and elucidate the role of various immune axes. In this review, we have summarized the current knowledge about the roles of innate and adaptive immune responsive cells in AD. In addition, current and novel treatment strategies for the management of AD are comprehensively described, including some ongoing clinical trials and promising therapeutic agents. This information will provide an asset towards identifying personalized targets for better therapeutic outcomes.
Each positive well in ELISPOT assays contains spots of variable sizes that can range from tens of micrometers up to a millimeter in diameter. Therefore, when it comes to counting these spots the decision on setting the lower and the upper spot size thresholds to discriminate between non-specific background noise, spots produced by individual T cells, and spots formed by T cell clusters is critical. If the spot sizes follow a known statistical distribution, precise predictions on minimal and maximal spot sizes, belonging to a given T cell population, can be made. We studied the size distributional properties of IFN-γ, IL-2, IL-4, IL-5 and IL-17 spots elicited in ELISPOT assays with PBMC from 172 healthy donors, upon stimulation with 32 individual viral peptides representing defined HLA Class I-restricted epitopes for CD8 cells, and with protein antigens of CMV and EBV activating CD4 cells. A total of 334 CD8 and 80 CD4 positive T cell responses were analyzed. In 99.7% of the test cases, spot size distributions followed Log Normal function. These data formally demonstrate that it is possible to establish objective, statistically validated parameters for counting T cell ELISPOTs.
Rolle der gammadelta T-Zellen in der Immunantwort bei Patienten mit gastrointestinalen Tumoren
(2022)
Zusammenfassend konnte im Rahmen der vorliegenden Arbeit die Frage nach der Fähigkeit der selektiven Stimulierung mittels des Phosphorantigens HMBPP und den beiden BTN3 Antikörpern bestätigt werden. Es konnte zudem wie erwartet hierbei ein Unterschied zwischen den beiden Kohorten detektiert werden. Dabei zeigte die Kohorte der Normalspender erwartungsgemäß eine stärkere Aktivierungs- sowie Proliferations-fähigkeit. Normalspender ließen sich signifikant besser mit HMBPP aktivieren und bei bestimmter Konzentration signifikant besser proliferieren, bei BTN3A und sc20.1 konnten keine signifikanten Unterschiede ermittelt werden, allerdings anhand der Mittelwerte eine deutlich stärkere Aktivierung und Proliferation aufgezeigt werden. Außerdem konnten interessante interindividuelle Unterschiede detektiert werden, die neue Erkenntnisse brachten. Mit Hilfe der untersuchten Oberflächenmoleküle CD45RA und CD27 und der Einteilung der gammadelta T-Zellen in unterschiedliche Subgruppen konnten so mögliche Erklärungen für die Unterschiede zwischen den Kohorten aufgezeigt werden. Normalspender zeigten signifikant höhere Anteile an naiven gammadelta T-Zellen und nicht signifikant höhere Anteile an central memory T-Zellen, demnach eine deutliche Verschiebung in Richtung nicht differenzierter Subsets, wohingegen die Tumorkohorte signifikant höhere effector memory T-Zellen aufwiesen und somit eine deutliche Verschiebung in Richtung differenzierter Subsets. Dadurch kann erklärt werden, weshalb Normalspender besser aktiviert werden und besser proliferieren können. Auch die Einteilung in unterschiedliche Profile 1-6 anhand CD28, CD27 und CD16 lieferte Gründe für den Unterschied zwischen den Kohorten, wobei Normalspender der Gruppe 1 und 2, Tumorpatienten der Gruppe 3 und 4 angehörten. Durch Ermittlung weiterer signifikanter Änderungen einiger exprimierter Oberflächenmoleküle CD39, CD161 und PD1 wurde mit Hilfe der vorliegenden Arbeit bekräftigt, dass einige Faktoren betrachtet werden müssen, die die Proliferation und Aktivierung der gammadelta T-Zellen positiv und negativ beeinflussen können. Es konnte jedoch auch erneut verdeutlicht werden, wie komplex und weitgreifend der Aktivierungsmechanismus, die damit verbundene Expansion und die Auslösung der einzelnen Effektorfunktionen ist.
Background
Measles virus (MV) causes T cell suppression by interference with phosphatidylinositol-3-kinase (PI3K) activation. We previously found that this interference affected the activity of splice regulatory proteins and a T cell inhibitory protein isoform was produced from an alternatively spliced pre-mRNA.
Hypothesis
Differentially regulated and alternatively splice variant transcripts accumulating in response to PI3K abrogation in T cells potentially encode proteins involved in T cell silencing.
Methods
To test this hypothesis at the cellular level, we performed a Human Exon 1.0 ST Array on RNAs isolated from T cells stimulated only or stimulated after PI3K inhibition. We developed a simple algorithm based on a splicing index to detect genes that undergo alternative splicing (AS) or are differentially regulated (RG) upon T cell suppression.
Results
Applying our algorithm to the data, 9% of the genes were assigned as AS, while only 3% were attributed to RG. Though there are overlaps, AS and RG genes differed with regard to functional regulation, and were found to be enriched in different functional groups. AS genes targeted extracellular matrix (ECM)-receptor interaction and focal adhesion pathways, while RG genes were mainly enriched in cytokine-receptor interaction and Jak-STAT. When combined, AS/RG dependent alterations targeted pathways essential for T cell receptor signaling, cytoskeletal dynamics and cell cycle entry.
Conclusions
PI3K abrogation interferes with key T cell activation processes through both differential expression and alternative splicing, which together actively contribute to T cell suppression.
Atherosclerosis is considered a chronic inflammatory disease of the arterial vessel wall which is not only modulated by innate and adaptive immune responses but also by factors of the blood coagulation system.
In general hypercoagulability seems to increase the development and progression of experimental atherosclerosis in mice on an atherogenic background. In addition, the great majority of coagulation proteins including coagulation factor XII (FXII) have been detected in early and advanced human atherosclerotic lesions supporting the cross-link between the coagulation system and atherosclerosis. Moreover, FXII has been detected in close proximity to macrophages, foam cells and smooth muscle cells in these lesions and has been demonstrated to be functionally active in human plaques. Although these data indicate that factor XII may play a role in atherogenesis a direct contribution of FXII to atherogenesis has not been addressed experimentally to date. Furthermore, clinical studies examining the function of FXII in vascular disease have yielded conflicting results.
Hence, in order to investigate the function of coagulation factor XII in atherosclerosis apolipoprotein E and FXII-deficient (F12\(^{-/-}\) apoE\(^{-/-}\)) mice were employed. Compared to F12\(^{+/+}\)apoE\(^{-/-}\) controls, atherosclerotic lesion formation was reduced in F12\(^{-/-}\)apoE\(^{-/-}\) mice, associated with diminished systemic T-cell activation and Th1-cell polarization after 12 weeks of high fat diet. Moreover, a significant decrease in plasma levels of complement factor C5a was evidenced in F12\(^{-/-}\)apoE\(^{-/-}\) mice. Interestingly, C5a increased the production of interleukin-12 (IL-12) in dendritic cells (DCs) and enhanced their capacity to trigger antigen-specific interferon-gamma (IFNγ) production in OTII CD4\(^+\) T cells in vitro. Importantly, a reduction in frequencies of IL-12 expressing splenic DCs from atherosclerotic F12\(^{-/-}\)apoE\(^{-/-}\) versus F12\(^{+/+}\)apoE\(^{-/-}\) mice was observed in vivo, accompanied by a diminished splenic Il12 transcript expression and significantly reduced IL-12 serum levels.
Consequently, these data reveal FXII to play an important role in atherosclerotic lesion formation and to promote DC-induced and systemic IL 12 expression as well as pro-inflammatory T-cell responses likely at least in part via the activation of the complement system.