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Adrenomedullin improves fertility and promotes pinopodes and cell junctionsin the peri-implantation endometrium

机译:肾上腺髓质素提高生育能力促进pinopodes和细胞连接在植入物周围子宫内膜中

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摘要

Implantation is a complex event demanding contributions from both embryo and endometrium. Despite advances in assisted reproduction, endometrial receptivity defects persist as a barrier to successful implantation in women with infertility. We previously demonstrated that maternal haploinsufficiency for the endocrine peptide adrenomedullin (AM) in mice confers a subfertility phenotype characterized by defective uterine receptivity and sparse epithelial pinopode coverage. The strong link between AM and implantation suggested the compelling hypothesis that administration of AM prior to implantation may improve fertility, protect against pregnancy complications, and ultimately lead to better maternal and fetal outcomes. Here, we demonstrate that intrauterine delivery of AM prior to blastocyst transfer improves the embryo implantation rate and spacing within the uterus. We then use genetic decrease-of-function and pharmacologic gain-of-function mouse models to identify potential mechanisms by which AM confers enhanced implantation success. In epithelium, we find that AM accelerates the kinetics of pinopode formation and water transport and that, in stroma, AM promotes connexin 43 expression, gap junction communication, and barrier integrity of the primary decidual zone. Ultimately, our findings advance our understanding of the contributions of AM to uterine receptivity and suggest potential broad use for AM as therapy to encourage healthy embryo implantation,for example, in combination with in vitro fertilization.
机译:植入是一个复杂的事件,需要胚胎和子宫内膜共同做出贡献。尽管在辅助生殖方面取得了进步,但子宫内膜容受性缺陷仍然是不孕妇女成功植入的障碍。我们以前证明,小鼠内分泌肽肾上腺髓质素(AM)的孕产妇单倍体不足会导致亚生育力表型,其特征是子宫接受能力不良和稀疏的上皮pinode覆盖。 AM和着床之间的紧密联系提出了令人信服的假说,即在着床前服用AM可以改善生育能力,防止妊娠并发症,并最终导致更好的母体和胎儿结局。在这里,我们证明胚泡转移之前子宫内AM的传递改善了胚胎着床率和子宫内的间距。然后,我们使用遗传功能降低和药理学功能获得的小鼠模型来确定AM增强植入成功的潜在机制。在上皮细胞中,我们发现AM促进了pinodeode形成和水运输的动力学,而在基质中,AM促进了连接蛋白43的表达,间隙连接通讯和主要蜕膜区的屏障完整性。最终,我们的发现提高了我们对AM对子宫接受性的贡献的理解,并暗示了将AM潜在地广泛用于鼓励健康胚胎植入的治疗方法,例如,结合体外受精。

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