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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Leukemia Inhibitory Factor Is Linked to Regulatory Transplantation Tolerance.
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Leukemia Inhibitory Factor Is Linked to Regulatory Transplantation Tolerance.

机译:白血病抑制因子与调节性移植耐受性有关。

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摘要

BACKGROUND.: The specific regulation of allo-tolerance in vivo occurs within a complex microenvironment and involves co-operation between a small proportion of different cell types within the spleen or draining lymph node. By analyzing unmanipulated whole spleen cell populations we have aimed to mimic this in vivo situation to identify critical signaling molecules in regulatory allo-tolerance. METHODS.: We compared the kinetics of cytokine release and induction of signaling proteins in CBA, versus CBA, spleen cells after challenge with BALB/c antigen. RESULTS.: The distinguishing features of allo-tolerance were Foxp3 protein expression, LIF release, and increased levels of STAT3. Comparison of isogenic clones of Tr1, Th1, and Th2 cells revealed that only the regulatory Tr1 cells are characterized by both LIF and IL10 release. CONCLUSIONS.: Overall, our findings demonstrate that allo-antigen driven signaling events can be detected within a whole spleen cell population and identify a role for LIF in the regulation of transplantation tolerance in vivo.
机译:背景:体内对异体耐受的特定调节发生在复杂的微环境中,并且涉及脾脏或引流淋巴结内一小部分不同细胞类型之间的合作。通过分析未操纵的整个脾细胞群体,我们旨在模拟这种体内情况,以识别调控同种异体耐受的关键信号分子。方法:我们比较了用BALB / c抗原攻击后,CBA和CBA脾细胞中细胞因子释放和信号蛋白诱导的动力学。结果:同种异体耐受的显着特征是Foxp3蛋白表达,LIF释放和STAT3水平升高。比较Tr1,Th1和Th2细胞的同基因克隆,发现只有调节性Tr1细胞的特征是LIF和IL10释放。结论:总的来说,我们的发现表明,在整个脾细胞群中可以检测到同种异体抗原驱动的信号传导事件,并确定了LIF在体内体内对移植耐受性的调节中的作用。

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