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首页> 外文期刊>Cell death & disease. >Decidual RANKL/RANK interaction promotes the residence and polarization of TGF-β1-producing regulatory γδ T cells
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Decidual RANKL/RANK interaction promotes the residence and polarization of TGF-β1-producing regulatory γδ T cells

机译:蜕膜RANKL / RANK相互作用促进产生TGF-β1的调节性γδT细胞的驻留和极化

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摘要

Decidual γδΤ (dγδΤ) cells play an essential role during successful pregnancy; however, the residence and polarization of γδΤ cells in decidua remain unclear. In this study, we observed higher levels of receptor activator for nuclear factor-κ B ligand (RANKL) on decidual stromal cells (DSCs), and its receptor RANK on dγδΤ cells in decidua from normal pregnancy compared with patients with recurrent spontaneous abortion (RSA). RANKL expressed by DSCs can induce the polarization of peripheral blood γδΤ (pγδΤ) and dγδΤ cells to Foxp3?+?γδΤ cells, and upregulate the expression of transforming growth factor (TGF)-β1. This process is mediated through activation of nuclear factor kappa-light-chain-enhancer of activated B cells (NF-κB). In addition, RANKL promotes the adhesion of dγδΤ cells to DSCs in vitro, which is associated with the upregulation of ICAM-1 and VCAM-1 on DSCs and integrins on dγδΤ cells. RANKL knockout leads to the decreased numbers of uterus total γδΤ cells, Foxp3+γδΤ cells and the expression of TGF-β1, and the increased pregnancy loss in mice. These results suggest that RANKL is a pivotal regulator of maternal-fetal tolerance by triggering the polarization and residence of TGF-β1-producing Foxp3+γδΤ cells in early pregnancy. The abnormal low level of RANKL/RANK results in pregnancy loss because of the dialogue disorder between DSCs and dγδΤ cells. This observation provides a scientific basis on which a potential marker can be detected to early warning of pregnancy loss.
机译:蜕膜γδΤ(dγδΤ)细胞在成功怀孕期间起着至关重要的作用。然而,尚不清楚蜕膜中γδΤ细胞的驻留和极化。在这项研究中,我们发现与正常自然流产(RSA)相比,正常妊娠蜕膜中蜕膜蜕膜细胞(DSCs)上的核因子-κB配体(RANKL)受体激活剂水平更高,蜕膜中dγδΤ细胞上的受体RANK更高水平。 )。 DSC表达的RANKL可以诱导外周血γδΤ(pγδΤ)和dγδΤ细胞向Foxp3β+γγδΤ细胞极化,并上调转化生长因子(TGF)-β1的表达。该过程是通过活化B细胞核因子κ轻链增强子(NF-κB)的活化来介导的。另外,RANKL在体外促进dγδΤ细胞对DSC的粘附,这与DSC上的ICAM-1和VCAM-1和dγδΤ细胞上的整联蛋白的上调有关。 RANKL敲除导致小鼠子宫总γδΤ细胞,Foxp3 +γδΤ细胞数量减少和TGF-β1的表达,并导致小鼠妊娠减少。这些结果表明,RANKL通过在妊娠早期触发产生TGF-β1的Foxp3 +γδΤ细胞的极化和滞留而成为母胎耐受性的关键调节剂。由于DSC与dγδΤ细胞之间的对话障碍,RANKL / RANK的异常低水平导致流产。该观察结果提供了科学的依据,可在此基础上检测到潜在的标志物,以预警妊娠流产。

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