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母语的节奏:胚胎-母体通讯中细胞外囊泡在着床前微环境中的动力学。

Rhythm of the First Language: Dynamics of Extracellular Vesicle-Based Embryo-Maternal Communication in the Pre-Implantation Microenvironment.

机构信息

Institute of Veterinary Medicine and Animal Sciences, Estonian University of Life Sciences, 50411 Tartu, Estonia.

Sheffield Institute for Translational Neuroscience (SITRAN), University of Sheffield, 385a Glossop Rd., Broomhall, Sheffield S10 2HQ, UK.

出版信息

Int J Mol Sci. 2023 Apr 6;24(7):6811. doi: 10.3390/ijms24076811.

Abstract

One of the most critical steps in mammalian reproduction is implantation. Embryos with an impaired capacity for embryo-maternal crosstalk are thought to have a reduced potential for implantation. One agent of embryo-maternal communication is extracellular vesicles (EV). EVs are lipid bilayer-bound biological nanoparticles implicated in intercellular communication between many of the known cell types. In the current study, we isolated EVs from trophoblast analogue JAr spheroids and supplemented the EVs with receptive endometrium analogue RL95-2 cells to simulate pre-implantation embryo-maternal dialogue. The transcriptome of the endometrial cells was examined at 30 min, 4 h and 48 h intervals using Oxford Nanopore technology. At the time points, 30 min, 4 h and 48 h, the endometrial cells showed a significantly altered transcriptome. It seems trophoblast EVs induce a swift and drastic effect on the endometrial transcriptome. The effect peaks at around 4 h of EV supplementation, indicating a generalized effect on cell physiology. Alterations are especially apparent in biological pathways critical to embryonic implantation, such as extracellular matrix-receptor interactions and cytokine-receptor interactions. These observations can be helpful in elucidating the dynamics of embryo-maternal communication in the pre-implantation period.

摘要

哺乳动物繁殖过程中最重要的步骤之一是着床。那些胚胎-母体细胞间通讯能力受损的胚胎,其着床潜能会降低。胚胎-母体通讯的一种介质是细胞外囊泡(EV)。EV 是由脂质双层包裹的生物纳米颗粒,涉及许多已知细胞类型之间的细胞间通讯。在本研究中,我们从滋养层模拟细胞球 JAr 中分离 EV,并将 EV 补充到接受型子宫内膜模拟细胞 RL95-2 中,以模拟着床前胚胎-母体对话。使用 Oxford Nanopore 技术在 30 分钟、4 小时和 48 小时的时间间隔检查子宫内膜细胞的转录组。在 30 分钟、4 小时和 48 小时的时间点,子宫内膜细胞的转录组显示出明显改变。似乎滋养层 EV 对子宫内膜转录组产生了迅速而剧烈的影响。这种影响在 EV 补充约 4 小时时达到峰值,表明对细胞生理学有普遍影响。改变在对胚胎着床至关重要的生物途径中尤为明显,例如细胞外基质-受体相互作用和细胞因子-受体相互作用。这些观察结果有助于阐明着床前胚胎-母体通讯的动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f37/10095160/74a4a8c27b40/ijms-24-06811-g001.jpg

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