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Regulatory T cells (Tregs) exert their immunosuppressive activity through several immunoregulatory mechanisms, including the production of anti-inflammatory cytokines such as IL-10. Although several studies suggest a role for Tregs in modulating crescentic GN, the underlying mechanisms are not well understood. Here, using IL-10 reporter mice, we detected IL-10–producing Foxp3+ T cells in the kidney, blood, and secondary lymphoid tissue in a mouse model of crescentic GN. Specific inactivation of Il10 in Foxp3+ Tregs eliminated the ability of these cells to suppress renal and systemic production of IFNγ and IL-17; these IL-10–deficient Tregs lost their capacity to attenuate renal tissue injury. These data highlight the suppressive functions of Tregs in crescentic GN and suggest the importance of Treg-derived IL-10 in ameliorating disease severity and in modulating both the Th1 and most notably Th17 immune response.The discovery of CD4+CD25+Foxp3+ regulatory T cells (Tregs) in the 1990s and their indispensable role in (self) tolerance and autoimmunity marked the beginning of a new era in immunology.1 Since then, different suppressive mechanisms mediated by various Treg cell subsets were identified,2,3 particularly in well studied models of autoimmune diseases such as Crohn''s disease,4 multiple sclerosis,5 or rheumatoid arthritis.6,7 Until now, only limited numbers of studies have assessed the function of regulatory T cells in crescentic GN. Adoptive cell transfer experiments in mice showed the beneficial role of exogenous wild-type (wt) CD4+CD25+ Tregs in attenuation of crescentic GN,8 whereas CCR6- and CCR7-deficient CD4+CD25+ Tregs failed to protect mice against GN.9,10 Recently, our own published data revealed the importance of endogenous Foxp3+ Tregs in suppressing the Th1 immune response and consequently ameliorating the disease severity in the T cell–dependent GN model of nephrotoxic nephritis (NTN).11 Concurrently, Ooi and coworkers confirmed the relevance of endogenous Foxp3+ Tregs in an accelerated model of experimental crescentic GN.12 However, the mechanisms of Treg cell-mediated suppression in crescentic GN are still unclear. One important player might be the anti-inflammatory cytokine IL-10, which is known to be released by Tregs in order to suppress immune responses and therefore might protect against autoimmunity.13 Indeed, endogenous IL-10 regulates the Th1 immune response in an accelerated model of experimental crescentic GN, as kidney damage is aggravated in IL-10–deficient mice.14 However, the source of protective IL-10 still needs to be clarified. Because IL-10 detection and tracking in vivo is difficult, most findings are based on studies with IL-10−/− mice.Therefore, to study the cell-specific function of IL-10, we used a double-knockin reporter mouse model (Foxp3-IRES-mRFP (FIR) x IL-10 ires gfp-enhanced reporter [tiger]), which enables detection of the well-defined and simultaneous expression of IL-10 (green fluorescent protein [GFP]) and Foxp3 (monomeric red fluorescent protein [mRFP]). Indeed, we detected a distinct population of renal mRFP+(Foxp3+) Tregs expressing GFP (IL-10) upon induction of NTN. Thus, to investigate the role of Treg cell-derived IL-10 in NTN, we first adoptively transferred CD4+CD25+ Tregs from wt or IL-10−/− mice into wt mice subsequently challenged with nephrotoxic sheep serum. Adoptively transferred wt Tregs attenuated the course of NTN, whereas IL-10−/− Tregs did not. Furthermore, to analyze the role of endogenous IL-10 produced by Tregs, we generated Foxp3YFP-Cre x Il10flox/flox mice, in which IL-10 is selectively inactivated in Foxp3+ Tregs.15 Indeed, lack of Treg-derived IL-10 resulted in an aggravated course of NTN. In summary, we demonstrated a crucial role of Treg cell-derived IL-10 in regulating the Th1 and most notably the Th17 immune response in NTN. Hence, this study contributes to the understanding of the suppressive mechanisms of Tregs in crescentic GN and will have biologic implications for designing therapeutic approaches.  相似文献   
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Zusammenfassung

Alle zwei Jahre findet in St. Gallen (Schweiz) die internationale Konsensuskonferenz zur Behandlung des primären Mammakarzinoms statt. Da sich das internationale Panel in St. Gallen aus Experten unterschiedlicher Länder zusammensetzt, spiegelt der Konsensus ein internationales Meinungsbild wider. Vor diesem Hintergrund erscheint es aus deutscher Sicht sinnvoll, die Abstimmungsergebnisse für den Therapiealltag in Deutschland zu konkretisieren. Eine deutsche Arbeitsgruppe mit acht Brustkrebsexperten, von denen zwei Mitglieder des internationalen St. Gallen-Panels sind, hat daher die Abstimmungsergebnisse der St. Gallen-Konsensuskonferenz (2013) für den Klinikalltag in Deutschland kommentiert. Inhaltliche Schwerpunkte der diesjährigen St. Gallen-Konferenz waren operative Fragestellungen der Brust und der Axilla, strahlentherapeutische und systemische Therapieoptionen sowie die klinische Relevanz der Tumorbiologie. Intensiv diskutiert wurde der klinische Einsatz von Multigen-Assays, inkl. ihrer Bedeutung für die individuelle Therapieentscheidung.  相似文献   
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The reaction of lysine and arginine residues of proteins with 1,2-dicarbonyl compounds result in the formation of advanced glycation end products (AGEs). Accumulation of AGEs is a characteristic feature of the aging brain and contributes to the development of neurodegenerative diseases such as Alzheimer's disease (AD). Therefore, it is of particular interest to study the cellular defense mechanisms against AGE formation and particularly the detoxification of their precursors. AGE precursor compounds such as methylglyoxal and glyoxal were cellulary detoxified by the glyoxalase system, consisting of glyoxalases I and II. Glyoxalase I levels are diminished in old aged brains but elevated in AD brains. However, it is still unknown how glyoxalase I level of AD brains changes in a disease and in an age-dependent manner. Therefore, we investigated the AD stage- and the age-dependent levels of glyoxalase I in the Brodmann area 22 of AD brains (n=25) and healthy controls (n=10). Our results obtained from RT-PCR reveal reducing glyoxalase I RNA levels with advancing stage of AD and with increasing age. Western Blot analysis indicates that in comparison to healthy controls, glyoxalase I protein amounts are 1.5-fold increased in early AD subjects and continuously decrease in middle and late stages of AD. The glyoxalase I protein amounts of AD patients also decrease with age. Results obtained from glyoxalase I activity measurement show 1.05-1.2-fold diminished levels in AD brains compared to healthy controls and no significant decrease neither with the stage of AD nor with age. The immunohistochemical investigations demonstrate an elevated number of glyoxalase I stained neurons in brains of early and middle but not in late AD subjects compared to age-matched healthy controls. In addition, the stage-dependent immunohistochemical investigation demonstrates that with reduced glyoxalase I staining AGE deposits prevail, specifically in late stage of AD. In conclusion, the decrease of glyoxalase I expression with increasing AD stage might be one reason for methylglyoxal-induced neuronal impairment, apoptosis, and AGE formation in plaques and tangles.  相似文献   
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For horizontal bone deficiency alveolar ridge osteotomy is considered an option for augmentation. Major advantages are the option for a one-stage approach and the absence of donor site morbidity. However, the conventional technique is associated with complications such as perforations and fractures of the cortical bone.A case using a 3D based modified, full-guided alveolar ridge expansion is described to explain the technique step by step. Main features of modified technique: successive application of surgical guides for ridge osteotomy and expansion – implementation of virtually determined splitting vector, which allows guided bone splitting along a guide surface of template in an ideal direction - osteotomy as deep as implant length. The example shows that the 3D based modified alveolar ridge osteotomy is a suitable alternative to the conventional technique as it has several advantages such as fewer fractures and perforations of the cortical vestibular bone.The individualized preoperative planning helps to minimize complications. However, long-term outcomes and a study, conducted on a study group, is needed to evaluate the benefits of our presented treatment protocol.  相似文献   
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The avian nucleus rotundus, a nucleus that appears to be homologous to the inferior/caudal pulvinar of mammals, is the major target of an ascending retino-tecto-thalamic pathway. Further clarification of the inputs to the rotundus and their functional properties will contribute to our understanding of the fundamental role of the ascending tectal inputs to the telencephalon in all vertebrates, including mammals. We found that the rotundus contains a massive plexus of glutamic acid decarboxylase (GAD)-immunoreactive axons using antibodies against GAD. The cells within the rotundus, however, were not immunoreactive for GAD. The retrograde tracer cholera toxin B fragment was injected into the rotundus to establish the location of the afferent neurons and determine the source of the gamma-aminobutyric acid (GABA) inputs into the rotundus. In addition to the recognized bilateral inputs from layer 13 of the tectum, we found intense retrograde labeling of neurons within the ipsilateral nuclei subpretectalis (SP), subpretectalis-caudalis (SPcd), interstitio-pretecto-subpretectalis (IPS), posteroventralis thalami (PV), and reticularis superior thalami (RS). All the neurons of the SP, SPcd, IPS, and PV were intensely GAD-immunoreactive. The neurons of layer 13 of the tectum were not immunoreactive for GAD. Following the destruction of the ipsilateral SP/IPS complex, we found a major reduction in the intensity of the GAD axonal immunoreactivity within the ipsilateral rotundus, but this destruction did not diminish the intensity of the GAD-immunoreactivity within the contralateral rotundus. Our studies indicated that the source of the massive GAD-immunoreactive plexus within the rotundus was from the ipsilateral SP, SPcd, IPS, and PV nuclei. These nuclei, in turn, received ipsilateral tectal input via collaterals of the neurons of layer 13 in the course of their projections upon the rotundus. We suggest that the direct bilateral tecto-rotundal projections are excitatory, whereas the indirect ipsilateral projections from the SP/IPS and PV are mainly inhibitory, possibly acting via a GABA-A receptor. © 1996 Wiley-Liss, Inc.  相似文献   
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