Aizawa Eishi, Peters Antoine H F M, Wutz Anton
Institute of Molecular Health Sciences, Swiss Federal Institute of Technology, ETH Zurich, Zurich, Switzerland.
RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.
Bioessays. 2025 Jan;47(1):e2400106. doi: 10.1002/bies.202400106. Epub 2024 Nov 5.
Production of oocytes from pluripotent cell cultures in a dish represents a new paradigm in stem cell and developmental biology and has implications for how we think about life. The spark of life for the next generation occurs at fertilization when sperm and oocyte fuse. In animals, gametes are the only cells that transmit their genomes to the next generation. Oocytes contain in addition a large cytoplasm with factors that direct embryonic development. Reconstitution of mouse oocyte and embryonic development in culture provides experimental opportunities and facilitates an unprecedented understanding of molecular mechanisms. However, the application of in vitro gametogenesis to reproductive medicine or infertility treatment remains challenging. One significant concern is the quality of in vitro-derived oocytes. Here, we review the current understanding and identify limitations in generating oocytes in vitro. From this basis, we explore opportunities for future improvements of the in vitro approach to generating high-quality oocytes.
在培养皿中由多能细胞培养物产生卵母细胞代表了干细胞和发育生物学中的一种新范式,并且对我们如何看待生命具有重要意义。当下一代生命的火花在精子与卵母细胞融合的受精过程中出现。在动物中,配子是唯一能将其基因组传递给下一代的细胞。卵母细胞还含有一个大的细胞质,其中含有指导胚胎发育的因子。在培养中重建小鼠卵母细胞和胚胎发育提供了实验机会,并有助于以前所未有的方式理解分子机制。然而,将体外配子发生应用于生殖医学或不孕症治疗仍然具有挑战性。一个重大问题是体外衍生卵母细胞的质量。在这里,我们综述了当前的认识,并确定了体外产生卵母细胞的局限性。在此基础上,我们探索了未来改进体外产生高质量卵母细胞方法的机会。