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牛胚胎-子宫内膜上皮界面的分子相互作用。

Molecular interactions at the bovine embryo-endometrial epithelium interface.

机构信息

Department of Veterinary Sciences, Gamete Research Centre, University of Antwerp, Wilrijk, Belgium.

Department of Animal Reproduction, School of Veterinary Medicine and Animal Science, University of São Paulo, Pirassununga, São Paulo, Brazil.

出版信息

Reproduction. 2020 Dec;160(6):887-903. doi: 10.1530/REP-20-0344.

Abstract

In cattle, pre-implantation embryo development occurs within the confinement of the uterine lumen. Current understanding of the bi-lateral molecular interactions between embryo and endometrium that are required for a successful pregnancy is limited. We hypothesized that the nature and intensity of reciprocal embryo-endometrium interactions depend on the extent of their physical proximity. Bovine endometrial epithelial cells (bEECs) and morulae were co-cultured in juxtacrine (Contact+) or non-juxtacrine (Contact-) apposition. Co-culture with bEECs improved blastocyst rates on day 7.5, regardless of juxtaposition. Contact+ regulated transcription of 1797 endometrial genes vs only 230 in the Contact- group compared to their control (no embryos) counterparts. A subset of 50 overlapping differentially expressed genes (DEGs) defined embryo-induced effects on bEEC transcriptome irrespective of juxtaposition. Functional analysis revealed pathways associated with interferon signaling and prostanoid biosynthesis. A total of 175 genes displayed a graded expression level depending on Contact+ or Contact-. These genes were involved in interferon-related and antigen presentation pathways. Biological processes enriched exclusively in Contact+ included regulation of cell cycle and sex-steroid biosynthesis. We speculate that, in vivo, embryonic signals fine-tune the function of surrounding cells to ultimately maximize pregnancy success.

摘要

在牛中,胚胎在子宫腔内发育。目前对于胚胎和子宫内膜之间为成功妊娠所必需的双侧分子相互作用的了解有限。我们假设胚胎-子宫内膜相互作用的性质和强度取决于它们物理接近的程度。将牛子宫内膜上皮细胞(bEEC)和桑葚胚共培养在旁分泌(接触+)或非旁分泌(接触-)位置。与 bEEC 共培养可提高第 7.5 天的囊胚率,而与毗邻无关。接触+调节了 1797 个子宫内膜基因的转录,而接触-组只有 230 个基因的转录,与它们的对照(无胚胎)相比。一组 50 个重叠差异表达基因(DEG)定义了胚胎对 bEEC 转录组的诱导作用,而与毗邻无关。功能分析显示与干扰素信号和前列腺素生物合成相关的途径。共有 175 个基因根据接触+或接触-表现出分级表达水平。这些基因参与干扰素相关和抗原呈递途径。仅在接触+中富集的生物学过程包括细胞周期和性激素生物合成的调节。我们推测,在体内,胚胎信号可以微调周围细胞的功能,最终最大限度地提高妊娠成功率。

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