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绵羊胚胎中 ITGB3 的缺失降低了 NOS3 和 SPP1 的表达:对发育中胎盘血管的影响†。

Loss of ITGB3 in ovine conceptuses decreases conceptus expression of NOS3 and SPP1: implications for the developing placental vasculature†.

机构信息

Department of Veterinary Integrative Biosciences, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX, USA.

Department of Animal Science, Texas A&M University, College Station, TX, USA.

出版信息

Biol Reprod. 2021 Mar 11;104(3):657-668. doi: 10.1093/biolre/ioaa212.

Abstract

During the peri-implantation period of pregnancy in sheep, there is an initial period of loose apposition of the elongating conceptuses (embryos and associated placental membranes) to the endometrial luminal epithelium (LE) that is followed by adhesion of the conceptus trophectoderm to the endometrial LE for implantation. Integrins and maternal extracellular matrix (ECM) molecules are major contributors to stable adhesion at implantation, and the β3 integrin subunit (ITGB3) is implicated in the adhesion cascade for implantation in several species including the sheep. We blocked mRNA translation for trophectoderm-expressed ITGB3 by infusing morpholino antisense oligonucleotides into the uterine lumen of pregnant ewes on Day 9 to assess effects on conceptus elongation, and on Day 16 to assess effects on early placental development in sheep. Results indicate that sheep conceptuses elongate and implant to the uterine wall in the absence of ITGB3 expression by the conceptuses; however, loss of ITGB3 in conceptuses decreased the growth of embryos to Day 24 of gestation, and decreased expression of secreted phosphoprotein 1 (SPP1) and nitric oxide synthase 3 (NOS3). Abundant SPP1 was localized around the blood vessels in the placental allantoic membrane in normal sheep pregnancies. We hypothesize that NOS3 and SPP1 positively influence the development of the vasculature within the allantois, and that decreased expression of NOS3 and SPP1, in response to knockdown of ITGB3 in conceptuses, alters development of the vasculature in the allantois required to transport nutrients from the endometrium to support growth and development of the embryo.

摘要

在绵羊妊娠的种植前期,延长的胚胎(胚胎和相关的胎盘膜)最初与子宫内膜腔上皮(LE)疏松附着,随后胚胎滋养层与子宫内膜 LE 附着进行种植。整合素和母体细胞外基质(ECM)分子是种植时稳定附着的主要贡献者,β3 整合素亚基(ITGB3)在包括绵羊在内的几种物种的种植附着级联反应中起作用。我们通过在妊娠第 9 天将形态发生素反义寡核苷酸注入子宫腔来阻断滋养层表达的 ITGB3 的 mRNA 翻译,以评估对胚胎延长的影响,以及在第 16 天评估对绵羊早期胎盘发育的影响。结果表明,在缺乏胚胎表达的 ITGB3 的情况下,绵羊胚胎仍能延长并植入子宫壁;然而,胚胎中 ITGB3 的缺失降低了胚胎生长至妊娠第 24 天的速度,并降低了分泌型磷蛋白 1(SPP1)和一氧化氮合酶 3(NOS3)的表达。在正常绵羊妊娠中,大量的 SPP1 定位于胎盘羊膜血管周围。我们假设 NOS3 和 SPP1 积极影响血管在羊膜中的发育,而 NOS3 和 SPP1 的表达减少,响应于胚胎中 ITGB3 的敲低,改变了血管在羊膜中的发育,这些血管需要从子宫内膜运输营养物质来支持胚胎的生长和发育。

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