963 resultados para INFLAMMATORY CYTOKINE PRODUCTION
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Intracellular pattern recognition receptors such as the nucleotide-binding oligomerization domain (NOD)-like receptors family members are key for innate immune recognition of microbial infection and may play important roles in the development of inflammatory diseases, including rheumatic diseases. In this study, we evaluated the role of NOD1 and NOD2 on development of experimental arthritis. Ag-induced arthritis was generated in wild-type, NOD1(-/-)!, NOD2(-/-), or receptor-interacting serine-threonine kinase 2(-/-) (RIPK2(-/-)) immunized mice challenged intra-articularly with methylated BSA. Nociception was determined by electronic Von Frey test. Neutrophil recruitment and histopathological analysis of proteoglycan lost was evaluated in inflamed joints. Joint levels of inflammatory cytokine/chemokine were measured by ELISA. Cytokine (IL-6 and IL-23) and NOD2 expressions were determined in mice synovial tissue by RT-PCR. The NOD2(-/-) and RIPK2(-/-), but not NOD1(-/-), mice are protected from Ag-induced arthritis, which was characterized by a reduction in neutrophil recruitment, nociception, and cartilage degradation. NOD2/RIPK2 signaling impairment was associated with a reduction in proinflammatory cytokines and chemokines (TNF, IL-1 beta, and CXCL1/KC). IL-17 and IL-17 triggering cytokines (IL-6 and IL-23) were also reduced in the joint, but there is no difference in the percentage of CD4(+) IL-17(+) cells in the lymph node between arthritic wild-type and NOD2(-/-) mice. Altogether, these findings point to a pivotal role of the NOD2/RIPK2 signaling in the onset of experimental arthritis by triggering an IL-17-dependent joint immune response. Therefore, we could propose that NOD2 signaling is a target for the development of new therapies for the control of rheumatoid arthritis. The Journal of Immunology, 2012, 188: 5116-5122.
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We investigated the effects of viable, extended freeze-drying (EFD) or heat-killed (HK) Mycobacterium bovis bacillus CalmetteGuerin (BCG) in respiratory burst activity, gene expression of CYBB and NCF1 encoding components of the human phagocyte nicotinamide adenine dinucleotide (NADPH) oxidase, TLR2 expression, and in IL-10 and TNF-a cytokine production by human peripheral blood mononuclear cells (PBMCs). Viable BCG significantly inhibited TLR2 and CYBB gene expression, as well as superoxide release by human PBMC. All BCG stimuli augmented IL-10 release, but only HK BCG or viable BCG increased TNF-a release by PBMCs. Our studies show that viable BCG can impair the NADPH oxidase system activation and the TLR2 route in human PBMCs. As well, different BCG preparations can distinctly influence cytokine production by human PBMCs.
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Background: Aging is associated with complex and constant remodeling of the immune function, resulting in an increasing susceptibility to infection and others diseases. The infections caused by Gram-negative microorganisms, present in nursing homes and hospitals, constitute one of the most common infections in the elderly, and are mainly combated by innate immune cells. Although the functions of innate immunity seem more preserved during aging than of adaptive immune mechanisms, two systems operate in an integrated way in the body, so that injury in one part of the immune system inevitably affects the other as they are part of a defensive network. The aim of this study was to investigate the in vitro production of proinflammatory (TNF-α, IL-6, IL-1α, CXCL-8 and MCP-1) and antiinflammatory (TGF-α and IL-10) cytokines by monocytes, stimulated or not (basal) with lipopolysaccharide, from healthy young and elderly subjects. By means of PBMCs, we also studied if cytokine profile is altered in these different patient groups, in the presence of lymphocytes, under the same experimental conditions. Results: The monocytes from elderly presented higher basal production of TNF-α, MCP-1 and lower of TGF-α than young monocytes. PBMC showed similar cytokines production, irrespective age or stimulation presence. In the presence of lymphocytes, the spontaneous production of IL-10 was higher and of TGF-α was lower than monocytes, regardless of age. After LPS-stimulation, the presence of lymphocytes resulted in increased IL-6, IL-1α, MCP-1 and IL-10 and decreased CXCL-8 and TGF-α in comparison to pure culture of monocytes from young patients. With age, the same differences were observed, except for CXCL-8 and TGF-α which production was the same between monocytes and PBMC stimulated with LPS.
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Background Staphylococcus aureus is the most common agent of septic arthritis that is a severe, rapidly progressive and destructive joint disease. Superantigens produced by S. aureus are considered the major arthritogenic factors. In this study, we compared the arthritogenic potential of five superantigen-producing staphylococcal strains. Methods Male C57BL/6 mice were intravenously infected with ATCC 19095 SEC+, N315 ST5 TSST-1+, S-70 TSST-1+, ATCC 51650 TSST-1+ and ATCC 13565 SEA+ strains. Clinical parameters as body weight, arthritis incidence and clinical score were daily evaluated. Joint histopathological analysis and spleen cytokine production were evaluated at the 14th day after infection. Results Weight loss was observed in all infected mice. ATCC 19095 SEC+, N315 ST5 TSST-1+ and S-70 TSST-1+ were arthritogenic, being the highest scores observed in ATCC 19095 SEC+ infected mice. Intermediate and lower clinical scores were observed in N315 ST5 TSST-1+ and S-70 TSST-1+ infected mice, respectively. The ATCC 13565 SEA+ strain caused death of 85% of the animals after 48 h. Arthritis triggered by the ATCC 19095 SEC+ strain was characterized by accentuated synovial hyperplasia, inflammation, pannus formation, cartilage destruction and bone erosion. Similar joint alterations were found in N315 ST5 TSST-1+ infected mice, however they were strikingly more discrete. Only minor synovial proliferation and inflammation were triggered by the S-70 TSST-1+ strain. The lowest levels of TNF-α, IL-6 and IL-17 production in response to S. aureus stimulation were found in cultures from mice infected with the less arthritogenic strains (S-70 TSST-1+ and ATCC 51650 TSST-1+). The highest production of IL-17 was detected in mice infected with the most arthritogenic strains (ATCC 19095 SEC+ and N315 ST5 TSST-1+). Conclusions Together these results demonstrated that S. aureus strains, isolated from biological samples, were able to induce a typical septic arthritis in mice. These results also suggest that the variable arthritogenicity of these strains was, at least in part, related to their differential ability to induce IL-17 production.
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Abstract Background Intestinal ischemia/reperfusion (IR) injury is a serious and triggering event in the development of remote organ dysfunction, from which the lung is the main target. This condition is characterized by intense neutrophil recruitment, increased microvascular permeability. Intestinal IR is also responsible for induction of adult respiratory distress syndrome, the most serious and life-threatening form of acute lung injury. The purpose of this study was to investigate the effect of annexin-A1 protein as an endogenous regulator of the organ remote injury induced by intestinal ischemia/reperfusion. Male C57bl/6 mice were subjected to intestinal ischemia, induced by 45 min occlusion of the superior mesenteric artery, followed by reperfusion. Results The intestinal ischemia/reperfusion evoked a high intensity lung inflammation as indicated by the number of neutrophils as compared to control group. Treatment with annexin-A1 peptidomimetic Ac2-26, reduced the number of neutrophils in the lung tissue and increased its number in the blood vessels, which suggests a regulatory effect of the peptide Ac2-26 in the neutrophil migration. Moreover, the peptide Ac2-26 treatment was associated with higher levels of plasma IL-10. Conclusion Our data suggest that the annexin-A1 peptidomimetic Ac2-26 treatment has a regulatory and protective effect in the intestinal ischemia/reperfusion by attenuation of the leukocyte migration to the lung and induction of the anti-inflammatory cytokine IL-10 release into the plasma. The anti-inflammatory action of annexin-A1 and its peptidomimetic described here may serve as a basis for future therapeutic approach in mitigating inflammatory processes due to intestinal ischemia/reperfusion.
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Background: Severe dengue virus (DENV) disease is associated with extensive immune activation, characterized by a cytokine storm. Previously, elevated lipopolysaccharide (LPS) levels in dengue were found to correlate with clinical disease severity. In the present cross-sectional study we identified markers of microbial translocation and immune activation, which are associated with severe manifestations of DENV infection. Methods: Serum samples from DENV-infected patients were collected during the outbreak in 2010 in the State of Sa˜o Paulo, Brazil. Levels of LPS, lipopolysaccharide binding protein (LBP), soluble CD14 (sCD14) and IgM and IgG endotoxin core antibodies were determined by ELISA. Thirty cytokines were quantified using a multiplex luminex system. Patients were classified according to the 2009 WHO classification and the occurrence of plasma leakage/shock and hemorrhage. Moreover, a (non-supervised) cluster analysis based on the expression of the quantified cytokines was applied to identify groups of patients with similar cytokine profiles. Markers of microbial translocation were linked to groups with similar clinical disease severity and clusters with similar cytokine profiles. Results: Cluster analysis indicated that LPS levels were significantly increased in patients with a profound pro-inflammatory cytokine profile. LBP and sCD14 showed significantly increased levels in patients with severe disease in the clinical classification and in patients with severe inflammation in the cluster analysis. With both the clinical classification and the cluster analysis, levels of IL-6, IL-8, sIL-2R, MCP-1, RANTES, HGF, G-CSF and EGF were associated with severe disease. Conclusions: The present study provides evidence that both microbial translocation and extensive immune activation occur during severe DENV infection and may play an important role in the pathogenesis.
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BACKGROUND: Intestinal ischemia/reperfusion (IR) injury is a serious and triggering event in the development of remote organ dysfunction, from which the lung is the main target. This condition is characterized by intense neutrophil recruitment, increased microvascular permeability. Intestinal IR is also responsible for induction of adult respiratory distress syndrome, the most serious and life-threatening form of acute lung injury. The purpose of this study was to investigate the effect of annexin-A1 protein as an endogenous regulator of the organ remote injury induced by intestinal ischemia/reperfusion. Male C57bl/6 mice were subjected to intestinal ischemia, induced by 45 min occlusion of the superior mesenteric artery, followed by reperfusion. RESULTS: The intestinal ischemia/reperfusion evoked a high intensity lung inflammation as indicated by the number of neutrophils as compared to control group. Treatment with annexin-A1 peptidomimetic Ac2-26, reduced the number of neutrophils in the lung tissue and increased its number in the blood vessels, which suggests a regulatory effect of the peptide Ac2-26 in the neutrophil migration. Moreover, the peptide Ac2-26 treatment was associated with higher levels of plasma IL-10. CONCLUSION: Our data suggest that the annexin-A1 peptidomimetic Ac2-26 treatment has a regulatory and protective effect in the intestinal ischemia/reperfusion by attenuation of the leukocyte migration to the lung and induction of the anti-inflammatory cytokine IL-10 release into the plasma. The anti-inflammatory action of annexin-A1 and its peptidomimetic described here may serve as a basis for future therapeutic approach in mitigating inflammatory processes due to intestinal
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Research for new biocompatible and easily implantable materials continuously proposes new molecules and new substances with biological, chemical and physical characteristics, that are more and more adapted to aesthetic and reconstructive surgery and to the development of biomedical devices such as cardiovascular prostheses. Two classes of polymeric biomaterials seem to meet better these requirements: “hydrogels” , which includes polyalkylimide (PAI) and polyvinylalcohol (PVA) and “elastomers”, which includes polyurethanes (PUs). The first ones in the last decade have had a great application for soft tissue augmentation, due to their similarity to this tissue for their high water content, elasticity and oxygen permeability (Dini et al., 2005). The second ones, on the contrary, are widely used in cardiovascular applications (catheters, vascular grafts, ventricular assist devices, total artificial hearts) due to their good mechanical properties and hemocompatibility (Zdrahala R.J. and Zdrahala I.J., 1999). In the biocompatibility evaluation of these synthetic polymers, that is important for its potential use in clinical applications, a fundamental aspect is the knowledge of the polymers cytotoxicity and the effect of their interaction with cells, in particular with the cell populations involved in the inflammatory responses, i.e. monocyte/macrophages. In consideration of what above said, the aim of this study is the comprehension of the in vitro effect of PAI, PVA and PU on three cell lines that represent three different stages of macrophagic differentiation: U937 pro-monocytes, THP-1 monocytes and RAW 264.7 macrophages. Cytotoxicity was evaluated by measuring the rate of viability with MTT, Neutral Red and morphological analysis at light microscope in time-course dependent experiments. The influence of these polymers on monocyte/macrophage activation in terms of cells adhesion, monocyte differentiation in macrophages, antigens distribution, aspecific phagocytosis, fluid-phase endocitosis, pro-inflammatory cytokine (TNF-α, IL-1β, IL-6) and nitric oxide (NO) release was evaluated. In conclusion, our studies have indicated that the three different polymeric biomaterials are highly biocompatible, since they scarcely affected viability of U937, THP-1 and RAW 264.7 cells. Moreover, we have found that even though hydrogels and polyurethane influences monocyte/macrophage differentiation (depending on the particular type of cell and polymer), they are immunocompatible since they not induced significantly high cytokine release. For these reasons their clinical applications are strongly encouraged.
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Immunreaktionen gegen Antigene können eine zelluläre Immunantwort, eingeleitet durch TH1-Zellen induzieren oder aber eine antikörpervermittelte humorale Immunantwort induzieren, die von Zellen des TH2-Typs bestimmt sind. Diese unterschiedlichen Immunreaktionen regulieren sich gegenseitig, indem sie sich wechselseitig unterdrücken. Dadurch stellt sich ein Gleichgewicht zwischen den TH1- und TH2-Immunantworten ein. Die Allergie vom Soforttyp ist TH2-dominiert und wird ausgelöst durch die Produktion spezifischer IgE-Antikörper gegen eigentlich harmlose Antigene. Durch die frühe Ausschüttung des Zytokins IL-4 von T-Zellen differenzieren naive allergenspezifische T-Zellen zu TH2-Zellen aus. Diese sezernieren dann ebenfalls IL-4 und auch IL-13, was die B-Zellen zu einer vermehrten Produktion von IgE-Molekülen stimuliert. IgE bindet an den hochaffinen IgE-Rezeptor auf Mastzellen, Basophilen und Eosinophilen. Bei weiterem Allergenkontakt kommt es durch Kreuzvernetzung der Fc-Rezeptoren zur Ausschüttung vo
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Regulatorische T-Zellen (Tregs) sind in der Lage die Proliferation und Cytokin-Produktion konventioneller T-Zellen zu supprimieren, wobei die beteiligten Moleküle weitestgehend unbekannt sind. Im Rahmen dieser Arbeit wurden differentielle Analysen sowohl auf mRNA - als auch auf Proteinebene durchgeführt um Moleküle zu identifizieren, welche präferentiell in regulatorischen bzw. in supprimierten T-Zellen (Tsups) exprimiert werden. Der Transkriptionsfaktor Pur-alpha konnte als präferentiell in murinen Tsups exprimiert identifiziert werden. Die präferentielle Expression von Pur-alpha in murinen Tsups konnte durch quantitative PCR-Analysen bestätigt werden. In humanen Tregs konnte mittels „differentieller Proteom-Analyse“ das Lektin Galectin-10 als das am stärksten präferentiell exprimierte Protein identifiziert werden. Die differentielle Expression von Galectin-10 konnte sowohl auf mRNA-Ebene als auch mit Hilfe eines spezifischen Antiserums gegen Galectin-10 bestätigt werden. Zur Untersuchung einer möglichen Beteiligung von Galectin-10 am anergen Phänotyp sowie an den suppressiven Eigenschaften von Tregs wurde ein Galectin-10-Expressionskonstrukt generiert. Die Überexpression von Galectin-10 in konventionellen T-Zellen führte zur Apoptose der transfizierten Zellen. Die Überexpression von Galectin-10 in der humanen T-Zell-Linie „Jurkat“ konnte hingegen problemlos durchgeführt werden, führte aber nicht zur Vermittlung suppressiver Eigenschaften. Zum Nachweis einer Beteiligung von Galectin-10 an den funktionellen Eigenschaften regulatorischer T-Zellen werden in weiterführenden Versuchen momentan siRNA-Experimente etabliert, um die Galectin-10-Biosynthese in Tregs spezifisch zu unterdrücken.
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DNA methylating compounds are widely used as anti-cancer chemotherapeutics. The pharmaceutical critical DNA lesion induced by these drugs is O6-methylguanine (O6MeG). O6MeG is highly mutagenic and genotoxic, by triggering apoptosis. Despite the potency of O6MeG to induce cell death, the mechanism of O6MeG induced toxicity is still poorly understood. Comparing the response of mouse fibroblasts wild-type (wt) and deficient for ataxia telangiectasia mutant protein (ATM), a kinase responsible for both the recognition and the signalling of DNA double-strand breaks (DSBs), it was shown that ATM deficient cells are more sensitive to the methylating agents N-methyl-N’-nitro-N-nitrosoguanidine (MNNG), methyl methansulfonate (MMS) and the anti-cancer drug temozolomide, in both colony formation and apoptosis assays. This clearly shows that DSBs are involved in O6MeG toxicity. By inactivating the O6MeG repair enzyme O6-methylguanine-DNA methyltransferase (MGMT) with the specific inhibitor O6-benzylguanine (O6BG), ATM wt and deficient cells became more sensitive to MNNG and MMS. The opposite effect was observed when over-expressing MGMT in ATM -/- cells. The results show that O6MeG is the critical DNA lesion causing death in ATM cells following MNNG treatment, and is partially responsible for the toxicity observed following MMS treatment. Furthermore, by inhibiting the ATM kinase activity with caffeine, it was shown that the resistance of wt cells to MNNG was due to the kinase activity of ATM, as wt cells underwent more apoptosis following methylating agent treatment in the presence of caffeine. Apoptosis and caspase-3 activation were late events, starting 48h after treatment. This lends support to the model where O6MeG lesions are converted into DSBs during replication. As ATM wt and deficient cells showed similar G2/M blockage and Chk1 activation following MNNG and MMS treatment, it was concluded that the protective effect of ATM is not due to cell cycle progression control. The hypersensitivity of ATM deficient cells was accompanied by their inability to activate the anti-apoptotic NFkB pathway. In a second part of this study, it was shown that the inflammatory cytokine IL-1 up-regulates the DNA repair gene apurinic endonuclease 2 (APEX2). Up-regulation of APEX2 occurred by transcriptional regulation as it was abrogated by actinomycin D. APEX2 mRNA accumulation was accompanied by increase in APEX2 protein level. IL-1 induced APEX2 expression as well as transfection of cells with APEX2 cDNA positively correlated with a decrease in apoptosis after treatment with genotoxic agents, particularly affecting cell death after H2O2. This indicates an involvement of APEX2 in the BER pathway in cells responding to IL-1.
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Humane Neugeborene leiden an einer erhöhten Anfälligkeit für Infektionskrankheiten. Die dendritischen Zellen (DC) werden für die beeinträchtigten neonatalen T-Helfer 1 (Th1) Immunantworten verantwortlich gemacht. Der Hauptaktivator der Differenzierung von Th1 Zellen ist Interleukin-12 (IL-12), ein Zytokin, welches in adulten, nicht aber in neonatalen DC vornehmlich nach Bindung der Toll-like Rezeptoren produziert wird. In der vorliegenden Arbeit wurde der potentielle Einfluss verschiedener TLR-Liganden auf die Initiierung neonataler Th1-Immunantworten untersucht. Einzelne TLR-Liganden induzierten die Reifung adulter DC, während die neonatalen DC erst nach simultaner Stimulierung von TLR3/TLR8 bzw. TLR4/TLR8 Reifungsmarker exprimierten. Der synergistische Effekt kombinierter TLR-Liganden zeigte sich sowohl in der adulten als auch der neonatalen Zytokinproduktion, wobei unterschiedliche Expressionsmuster für IL-1beta, IL-6, IL-8, IL-10, TNFalpha und vor allem IL-27 beobachtet wurden. Besonders IL-12p70 wurde von neonatalen DC ausschließlich nach kombinierter TLR-Stimulation produziert. Darüber hinaus wurde die Fähigkeit aktivierter DC analysiert, autologe T-Zellen zu polarisieren. Interessanterweise konnte beobachtet werden, dass die Überstände kombiniert stimulierter neonataler DC die Interferon-gamma Produktion in neonatalen naiven T-Zellen auslösten. Und somit konnte gezeigt werden, dass neonatale DC naive T-Zellen hinsichtlich einer Th1-Immunantwort polarisieren können. Letztendlich zeigen die Ergebnisse neue Möglichkeiten auf, potente Impfstrategien für Neugeborene zu entwickeln.
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Die Induktion regulatorischer T-Zellen (Treg) spielt im Zusammenhang mit der Kontrolle allergenspezifischer Reaktionen, insbesondere auch im Rahmen einer erfolgreichen Hyposensibilisierung mit hohen Allergendosen, eine zentrale Rolle. In der vorliegenden Arbeit wurden die Mechanismen der Rekrutierung allergenspezifischer Treg daher in einem Mausmodell untersucht, in dem analog zur spezifischen Immuntherapie (SIT) die repetitive Verabreichung von hohen Antigendosen einen IgE-spezifischen Suppressionsmechanismus aktiviert, während die Injektion niedriger Antigendosen eine potente IgE-Antwort induziert. Th1-Zellen sowie konventionelle CD4+CD25+ oder CD8+CD28- Treg konnten als Vermittlerpopulationen des suppressiven Effektes in hochdosig immunisierten Mäusen ausgeschlossen werden. Mittels Transferexperimenten wurden erstmals CD4-CD8- doppelt negative Treg als eine die IgE-Suppression vermittelnde Zellpopulation identifiziert. Desweiteren wurden DNA-Transferexperimente durchgeführt, mit dem Ziel, adaptive Treg zum Zwecke der Inhibition allergenspezifischer Immunreaktionen zu induzieren. Dazu wurden IL-10- bzw. TGF-ß-kodierende Plasmide (pCMV-IL-10, pCMV-TGF-ß) hergestellt und in Kombination mit einem Plasmid, welches das Modellallergen ß-Galaktosidase (ßGal) unter der Kontrolle des DC-spezifischen Fascin-Promotors (pFascin-ßGal) kodierte, Mäusen mit der Genpistole appliziert. Die Expression des Modellallergens in Verbindung mit der konstitutiven Produktion von immunsuppressiven Zytokinen sollte bei den mit den transfizierten DC interagierenden antigenspezifischen T-Zellen zu einer verstärkten Differenzierung von Treg führen. Die Experimente zeigten, dass die Koapplikation von IL-10-kodierenden Plasmiden eine Immunsuppression induziert, die sich in einer verminderten antigenspezifischen Antikörperproduktion, Zytokinproduktion und CTL-Induktion zeigt, die jedoch bei nachfolgender Sensibilisierung mit ßGal-Protein nicht aufrechterhalten werden kann. Dahingegen führte die Koapplikation von TGF-ß-kodierenden Plasmiden verbunden mit einer nachfolgenden Sensibilisierung zu einer leichten Inhibition der IgG1- und IgG2a-Produktion verglichen mit der Vakzinierung mit pFascin-ßGal allein. Dieser inhibitorische Effekt von pCMV-TGF-ß wurde interessanterweise nicht bereits nach der DNA-Immunisierung, sondern erst nach Sensibilisierung mit dem Protein beobachtet.
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CD4+CD25+ natürlich vorkommende regulatorische T-Zellen (nTregs) repräsentieren in Menschen und Mäusen etwa 5-10% aller peripheren CD4+ T-Zellen und besitzen eine wichtige Aufgabe im Immunsystem. nTregs sind entscheidend an der peripheren Toleranz beteiligt, da sie potenziell autoaggressive T-Zellen in ihrer Cytokinproduktion und Proliferation hemmen. Trotzdem ist der molekulare Mechanismus der nTreg-vermittelten Suppression und der Entwicklung dieser nTregs noch weitestgehend unbekannt. Vor einigen Jahren wurde der Transkriptionsfaktor FoxP3 (Forkhead Box P3) als der „Hauptregulator“ für die Entwicklung und Funktion von nTregs identifiziert. Um die suppressiven Fähigkeiten von nTregs optimal für therapeutische Zwecke einsetzen zu können, ist es daher von großer Notwendigkeit den zugrundeliegenden molekularen Mechanismus zu verstehen und Moleküle zu identifizieren, die an der Regulation des nTreg-spezifischen Faktors FoxP3 beteiligt sind. Ein Teil dieser Arbeit beschäftigt sich mit der microRNA155 (miR155) bei der nTreg-vermittelten Suppression. Es konnte gezeigt werden, dass die ektopische Expression der miR155 in konventionellen CD4+ T-Zellen zu einer Erhöhung der IL-2 Produktion führte, so dass die Zellen resistenter gegenüber der nTreg-vermittelten Suppression wurden. Die transiente Aufhebung der Suppression durch die miR155 bietet somit einen möglichen therapeutischen Einsatz bei der Behandlung von Tumorerkrankungen. Weiterhin konnte in dieser Arbeit demonstriert werden, dass der Transkriptionsfaktor HELIOS, oder vielmehr seine lange Isoform, HELIOS_long, eine entscheidende Rolle bei der Regulation der FoxP3 Expression einnimmt. Im Vergleich zu konventionellen CD4+ T-Zellen exprimieren nTregs hohe Mengen an HELIOS. In in vitro Studien zeigte sich, dass endogenes HELIOS in nTregs an den FoxP3 Promotor binden und diesen aktivieren kann. Die ektopische Expression von HELIOS_long führte in konventionellen CD4+ T-Zellen (HELIOSlowFoxP3-) nur in Gegenwart der Cytokine IL-2 und TGF-β zu einer gesteigerten FoxP3 Promotor Aktivität. Neben der Aktivierung konnte auch eine gesteigerte FoxP3 Protein Expression detektiert werden. Diese in vitro Daten konnten auch in einem in vivo Mausmodell verifiziert werden. Der adoptive Transfer HELIOS_long transfizierter CD4+ T-Zellen (HELIOSlowFoxP3-) in T-Zell-defiziente Mäuse führte zu der Induktion FoxP3+ T-Zellen mit suppressiven Fähigkeiten sowohl ex vivo als auch in vivo. Zusammengefasst zeigte sich, dass der Transkriptionsfaktor HELIOS einen stark fördernden Einfluss auf die Expression von FoxP3 besitzt. Diese Beobachtung bietet eine Möglichkeit für die Induktion stabiler regulatorischer T-Zellen als therapeutischen Einsatz für die Behandlung von Autoimmunerkrankungen.
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L’infiammazione cronica è un fattore di rischio di insorgenza del cancro, e la citochina infiammatoria IL-6 gioca un ruolo importante nella tumorigenesi. In questo studio abbiamo dimostrato che L’IL-6 down-regola l'espressione e l'attività di p53. In linee cellulari umane, IL-6 stimola la trascrizione dell’rRNA mediante espressione della proteina c-myc a livello post-trascrizionale in un meccanismo p38MAPK-dipendente. L'up-regolazione della biogenesi ribosomiale riduce l'espressione di p53 attraverso l'attivazione della via della proteina ribosomale-MDM2. La down-regolazione di p53 produce l’acquisizione di modifiche fenotipiche e funzionali caratteristiche della epitelio mesenchimale di transizione, un processo associato a trasformazione maligna e progressione tumorale. I nostri dati mostrano che questi cambiamenti avvengono anche nelle cellule epiteliali del colon di pazienti affetti da colite ulcerosa, un esempio rappresentativo di una infiammazione cronica soggetta a trasformazione neoplastica, che scompaiono dopo trattamento con farmaci antinfiammatori. Questi risultati svelano un nuovo effetto oncogenico indotto dall’IL-6 che può contribuire notevolmente ad aumentare il rischio di sviluppare il cancro non solo in pazienti con infiammazioni croniche, ma anche in quei pazienti con condizioni patologiche caratterizzate da elevato livello di IL-6 nel plasma, quali l'obesità e e il diabete mellito di tipo 2.