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卵泡液细胞外囊泡支持牛卵母细胞的能量代谢,改善囊胚发育及质量†

Follicular-fluid extracellular vesicles support energy metabolism of bovine oocytes, improving blastocyst development and quality†.

作者信息

Lipinska Paulina, Smits Katrien, Van Soom Ann, Pavani Krishna Chaitanya, Warzych Ewelina

机构信息

Department of Genetics and Animal Breeding, Poznan University of Life Sciences, Poznan, Poland.

Department of Internal Medicine, Reproduction and Population Medicine, Ghent University, Merelbeke, Belgium.

出版信息

Biol Reprod. 2025 Jul 13;113(1):109-126. doi: 10.1093/biolre/ioaf096.

Abstract

Extracellular vesicles (EVs) from follicular fluid (FF) seem to play a significant role in communication within ovarian follicles in several species. The present study aimed to examine the supporting effect of FF-derived small EVs (FF-sEVs) during in vitro maturation (IVM) of bovine cumulus-oocyte complexes (COCs) under conditions of disturbed energy metabolism. Bovine COCs were matured in vitro with inhibitors targeting lipid metabolism (etomoxir) or glucose metabolism (iodoacetate combined with dehydroepiandrosterone), in the presence or absence of FF-sEVs. Following maturation, oocytes and cumulus cells were analyzed by real-time quantitative polymerase chain reaction (qPCR) and stained to visualize lipid droplets. The uptake of FF-sEVs was visualized by fluorescent labeling. In vitro fertilization and embryo culture were followed by mass spectrometry analysis of hatched blastocysts. We demonstrate for the first time that FF-sEVs are transported from the medium into the oocytes, via the cumulus cells and through transzonal projections into the perivitelline space and ooplasm. Cumulus cells under metabolic stress conditions exhibit an increased FF-sEV uptake from the maturation medium. FF-sEV supplementation during metabolic stress conditions enhances the MII rate in oocytes and positively affects subsequent embryo development and quality revealed by altered metabolic activity. Lipid droplet parameters and gene expression in cumulus cells and oocytes are affected by FF-sEV supplementation, which is more pronounced in cumulus cells. Our findings show that FF-sEV supplementation during IVM under metabolic stress conditions significantly affects COCs, with a positive effect on further blastocyst quality. We provide novel insights into the role of FF-sEVs in oocyte maturation and blastocyst development.

摘要

卵泡液(FF)来源的细胞外囊泡(EVs)似乎在多个物种的卵巢卵泡内通讯中发挥着重要作用。本研究旨在考察在能量代谢紊乱条件下,FF来源的小细胞外囊泡(FF-sEVs)对牛卵丘-卵母细胞复合体(COCs)体外成熟(IVM)的支持作用。将牛COCs在存在或不存在FF-sEVs的情况下,与靶向脂质代谢的抑制剂(依托莫司)或葡萄糖代谢的抑制剂(碘乙酸联合脱氢表雄酮)一起进行体外成熟培养。成熟后,通过实时定量聚合酶链反应(qPCR)分析卵母细胞和卵丘细胞,并进行染色以观察脂滴。通过荧光标记观察FF-sEVs的摄取情况。体外受精和胚胎培养后,对孵化的囊胚进行质谱分析。我们首次证明,FF-sEVs通过卵丘细胞,经透明带突起进入卵周间隙和卵质,从而从培养基转运至卵母细胞。代谢应激条件下的卵丘细胞从成熟培养基中摄取FF-sEVs的量增加。在代谢应激条件下补充FF-sEVs可提高卵母细胞的MII率,并对随后胚胎的发育和质量产生积极影响,这可通过代谢活性的改变得以体现。FF-sEVs的补充会影响卵丘细胞和卵母细胞中的脂滴参数和基因表达,在卵丘细胞中这种影响更为明显。我们的研究结果表明,在代谢应激条件下IVM期间补充FF-sEVs会显著影响COCs,并对进一步的囊胚质量产生积极影响。我们为FF-sEVs在卵母细胞成熟和囊胚发育中的作用提供了新的见解。

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