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输卵管上皮相互作用:在精子选择和胚胎质量中的作用。

Oviduct epithelium interactions: roles in sperm selection and embryo quality.

作者信息

Saint-Dizier Marie, Souza-Fabjan Joanna Maria Gonçalves, Reynaud Karine, Mermillod Pascal, Almiñana Carmen, Bauersachs Stefan, Mahé Coline

机构信息

Institut National de Recherche pour l'agriculture, l'alimentation et l'environnement - INRAE, Centre National de la Recherche Scientifique - CNRS, Université de Tours, Physiologie de la Reproduction et des Comportements, Nouzilly, France.

Faculdade de Medicina Veterinária, Universidade Federal Fluminense - UFF, Niterói, RJ, Brasil.

出版信息

Anim Reprod. 2025 Aug 14;22(3):e20250035. doi: 10.1590/1984-3143-AR2025-0035. eCollection 2025.

Abstract

This review provides an up-to-date overview of the roles of the oviduct during the periconception period and underlying mechanisms. The functions of the oviduct before, during, and after fertilization are highlighted, with special focus on the effects of epithelial cell contact and luminal secretions on sperm selection mechanisms and acquisition of fertilization ability. The current knowledge on how the oviduct contributes to support fertilization and embryo development via the overall physical milieu (oxygen tension, fluid current, ciliated epithelial cells) and the role of its secretions is also provided. Altogether, the review underlines the unique role of the oviduct during gamete selection and early embryo development, which so far has not been completely possible to mirror when assisted reproductive technologies (ART) are used. Unveiling the most important functional components of oviductal secretions that contribute to better sperm selection, and boost sperm fertilizing ability and early embryo development, can indeed be useful to improve the outcomes of current systems used in ART.

摘要

本综述提供了围受孕期间输卵管的作用及潜在机制的最新概述。重点介绍了受精前、受精期间和受精后输卵管的功能,特别关注上皮细胞接触和管腔分泌物对精子选择机制及受精能力获得的影响。还介绍了目前关于输卵管如何通过整体物理环境(氧张力、液流、纤毛上皮细胞)支持受精和胚胎发育及其分泌物作用的知识。总之,该综述强调了输卵管在配子选择和早期胚胎发育过程中的独特作用,而这在使用辅助生殖技术(ART)时目前尚无法完全模拟。揭示输卵管分泌物中有助于更好地选择精子、提高精子受精能力和早期胚胎发育的最重要功能成分,确实有助于改善目前ART系统的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db0d/12419264/33c2c6895c73/1984-3143-ar-22-3-e20250035-gf01.jpg

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