首页> 外文期刊>Scandinavian journal of immunology. >Cyclosporin-A differentially affects apoptosis during in vivo rat thymocyte maturation.
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Cyclosporin-A differentially affects apoptosis during in vivo rat thymocyte maturation.

机译:在体内大鼠胸腺细胞成熟过程中,环孢菌素A差异性地影响细胞凋亡。

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Maturation arrest and interference with selection are two well-documented effects of cyclosporin-A (CsA) on the thymus. We recently hypothesized that these effects are related and owing to the reduced T-cell receptor (TCR)-CD3 complex-mediated signal transduction in thymocytes upon CsA treatment. In this hypothesis, the maturation arrest is the result of the additional depletion of thymocytes that normally survive by positive selection, whereas the impaired self-tolerance induction is caused by an increased survival of thymocytes that normally undergo negative selection. In this view, it is anticipated that CsA differentially affects thymocyte apoptosis during in vivo thymocyte maturation. Indeed, we report in this study a strong increase in apoptotic cells in the thymic cortex on in situ analysis. Simultaneously, the number of apoptotic cells had decreased at the cortico-medullary zone which is held to be the site for negative selection. Rapamycin (Rapa) also interferes with thymocyte maturation by inhibiting cytokine-driven proliferation. Hence, Rapa preferentially affects the early maturational stages of thymocyte development and is considered not to alter thymocyte selection and subsequent apoptotic events. Indeed, the number of apoptotic events appears not to be altered. However, possibly owing to the decrease in cortical macrophages, the apoptotic cells revealed an atypical enumeration around blood vessels. Taken together, our results favour the hypothesis that the dominant effect of CsA on the thymus is the reduction of the TCR-CD3 complex-mediated signal transduction in thymocytes upon interaction with stromal cells. Furthermore, the preferential localization of apoptotic cells next to blood vessels upon Rapa administration may indicate that endothelial cells are a back-up system for the removal of apoptotic cells.
机译:成熟停滞和选择干扰是环孢菌素A(CsA)对胸腺的两个有据可查的作用。我们最近假设,这些作用是相关的,并且是由于CsA治疗后胸腺细胞中T细胞受体(TCR)-CD3复合物介导的信号转导减少。在这种假设下,成熟停滞是正常选择正存活的胸腺细胞额外耗竭的结果,而自耐受诱导受损的原因是通常进行阴性选择的胸腺细胞存活增加。根据这种观点,可以预期CsA在体内胸腺细胞成熟过程中差异地影响胸腺细胞凋亡。确实,我们在这项研究中报告了在原位分析中胸腺皮质中凋亡细胞的强烈增加。同时,在被认为是阴性选择部位的皮质-髓质区,凋亡细胞的数量减少了。雷帕霉素(Rapa)还通过抑制细胞因子驱动的增殖来干扰胸腺细胞成熟。因此,Rapa优先影响胸腺细胞发育的早期成熟阶段,并且被认为不会改变胸腺细胞的选择和随后的凋亡事件。实际上,凋亡事件的数目似乎没有改变。然而,可能由于皮质巨噬细胞的减少,凋亡细胞显示出血管周围的非典型枚举。两者合计,我们的结果支持这样的假设,即CsA对胸腺的主要作用是与基质细胞相互作用后胸腺细胞中TCR-CD3复合物介导的信号转导减少。此外,Rapa给药后,凋亡细胞在血管旁的优先定位可能表明内皮细胞是用于去除凋亡细胞的备用系统。

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