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Uterine DCs are crucial for decidua formation during embryo implantation in mice

机译:子宫DC对小鼠胚胎着床过程中蜕膜的形成至关重要

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摘要

Implantation is a key stage during pregnancy, as the fate of the embryo is often decided upon its first contact with the maternal endometrium. Around this time, DCs accumulate in the uterus; however, their role in pregnancy and, more specifically, implantation, remains unknown. We investigated the function of uterine DCs (uDCs) during implantation using a transgenic mouse model that allows conditional ablation of uDCs in a spatially and temporally regulated manner. Depletion of uDCs resulted in a severe impairment of the implantation process, leading to embryo resorption. Depletion of uDCs also caused embryo resorption in syngeneic and T cell–deficient pregnancies, which argues against a failure to establish immunological tolerance during implantation. Moreover, even in the absence of embryos, experimentally induced deciduae failed to adequately form. Implantation failure was associated with impaired decidual proliferation and differentiation. Dynamic contrast-enhanced MRI revealed perturbed angiogenesis characterized by reduced vascular expansion and attenuated maturation. We suggest therefore that uDCs directly fine-tune decidual angiogenesis by providing two critical factors, sFlt1 and TGF-β1, that promote coordinated blood vessel maturation. Collectively, uDCs appear to govern uterine receptivity, independent of their predicted role in immunological tolerance, by regulating tissue remodeling and angiogenesis. Importantly, our results may aid in understanding the limited implantation success of embryos transferred following in vitro fertilization.
机译:植入是怀孕期间的关键阶段,因为胚胎的命运通常取决于它与母体子宫内膜的首次接触。大约在这个时间,DC积聚在子宫中。然而,它们在怀孕,尤其是植入过程中的作用仍然未知。我们使用允许以空间和时间调控方式对uDC进行条件消融的转基因小鼠模型,研究了植入过程中子宫DC(uDC)的功能。 uDC的消耗导致植入过程的严重损害,从而导致胚胎吸收。 uDC的消耗还导致同基因和T细胞缺陷妊娠的胚胎吸收,这反对在植入过程中无法建立免疫耐受性。而且,即使在没有胚胎的情况下,实验诱导的蜕皮也不能充分形成。植入失败与蜕膜蜕膜和分化受损有关。动态对比增强MRI显示血管生成受干扰,其特征在于血管扩张减少和成熟减弱。因此,我们建议uDC通过提供两个关键因子sFlt1和TGF-β1来直接微调蜕膜性血管新生,这些关键因子可促进协调的血管成熟。总体而言,uDC似乎通过调节组织重塑和血管生成而独立于其在免疫耐受中的预测作用而支配子宫的接受性。重要的是,我们的结果可能有助于了解体外受精后移植的胚胎植入成功率有限。

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