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RANKL-mediated harmonious dialogue between fetus and mother guarantees smooth gestation by inducing decidual M2 macrophage polarization

机译:RANKL介导的胎儿与母亲之间的和谐对话通过诱导蜕膜M2巨噬细胞极化来确保顺利妊娠

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Decidual macrophages (dM ? ) contribute to maternal–fetal tolerance. However, the mechanism of dM ? differentiation during pregnancy is still largely unknown. Here, we report that receptor activator for nuclear factor- κ B ligand (RANKL), secreted by human embryonic trophoblasts and maternal decidual stromal cells (DSCs), polarizes dM ? toward a M2 phenotype. This polarization is mediated through activation of Akt/signal transducer and activator of transcription 6 (STAT6) signaling, which is associated with the upregulation of histone H3 lysine-27 demethylase Jmjd3 and IRF4 in dM ? . Such differentiated dM ? can induce a Th2 bias that promotes maternal–fetal tolerance. Impaired expression of RANKL leads to dysfunction of dM ? in vivo and increased rates of fetal loss in mice. Transfer of RANK+M ? reverses mouse fetal loss induced by M ? depletion. Compared with normal pregnancy, there are abnormally low levels of RANKL/RANK in villi and decidua from miscarriage patients. These results suggest that RANKL is a pivotal regulator of maternal–fetal tolerance by licensing dM ? to ensure a successful pregnancy outcome. This observation provides a scientific basis on which a potential therapeutic strategy can be targeted to prevent pregnancy loss.
机译:蜕膜巨噬细胞(dM?)有助于母婴耐受。但是,dM的机制是什么?怀孕期间的分化仍然很大程度上未知。在这里,我们报道了人类胚胎滋养层细胞和母体蜕膜基质细胞(DSCs)分泌的核因子κB配体(RANKL)的受体激活剂使dM极化。朝向M2表型。这种极化是通过激活Akt /信号转导子和转录激活子6(STAT6)来介导的,这与组蛋白H3赖氨酸-27脱甲基酶Jmjd3和IRF4在dM中的上调有关。 。如此差异化的dM?会引起Th2偏倚,从而促进母婴耐受。 RANKL表达受损会导致dM功能障碍?体内和胎儿流失率增加。转移RANK + M吗?逆转M?引起的小鼠胎儿丢失。消耗。与正常妊娠相比,流产患者的绒毛和蜕膜中RANKL / RANK的含量异常低。这些结果表明,通过许可dM,RANKL是母婴耐受性的关键调节剂。确保怀孕成功。该观察结果为确定潜在的治疗策略以防止流产提供了科学依据。

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