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维甲酸在精子发生中的作用及其在男性生殖中的应用。

The Role of Retinoic Acid in Spermatogenesis and Its Application in Male Reproduction.

机构信息

Beijing Key Laboratory for Animal Genetic Improvement, National Engineering Laboratory for Animal Breeding, Key Laboratory of Animal Genetics and Breeding of the Ministry of Agriculture, College of Biological Sciences, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

National Center of Technology Innovation for Animal Model, National Health Commission of China (NHC) Key Laboratory of Comparative Medicine, Institute of Laboratory Animal Sciences, Chinese Academy of Medical Sciences and Comparative Medicine Center, Peking Union Medical College, Beijing 100021, China.

出版信息

Cells. 2024 Jun 24;13(13):1092. doi: 10.3390/cells13131092.

Abstract

Spermatogenesis in mammalian testes is essential for male fertility, ensuring a continuous supply of mature sperm. The testicular microenvironment finely tunes this process, with retinoic acid, an active metabolite of vitamin A, serving a pivotal role. Retinoic acid is critical for various stages, including the differentiation of spermatogonia, meiosis in spermatogenic cells, and the production of mature spermatozoa. Vitamin A deficiency halts spermatogenesis, leading to the degeneration of numerous germ cells, a condition reversible with retinoic acid supplementation. Although retinoic acid can restore fertility in some males with reproductive disorders, it does not work universally. Furthermore, high doses may adversely affect reproduction. The inconsistent outcomes of retinoid treatments in addressing infertility are linked to the incomplete understanding of the molecular mechanisms through which retinoid signaling governs spermatogenesis. In addition to the treatment of male reproductive disorders, the role of retinoic acid in spermatogenesis also provides new ideas for the development of male non-hormone contraceptives. This paper will explore three facets: the synthesis and breakdown of retinoic acid in the testes, its role in spermatogenesis, and its application in male reproduction. Our discussion aims to provide a comprehensive reference for studying the regulatory effects of retinoic acid signaling on spermatogenesis and offer insights into its use in treating male reproductive issues.

摘要

哺乳动物睾丸中的精子发生对于雄性生育能力至关重要,确保持续供应成熟的精子。睾丸微环境精细地调节着这个过程,视黄酸,维生素 A 的一种活性代谢物,起着关键作用。视黄酸对于各种阶段都很关键,包括精原细胞的分化、生殖细胞的减数分裂以及成熟精子的产生。维生素 A 缺乏会阻止精子发生,导致大量生殖细胞退化,而用视黄酸补充可以逆转这种情况。尽管视黄酸可以恢复一些患有生殖障碍男性的生育能力,但它并非普遍有效。此外,高剂量可能会对生殖产生不利影响。视黄醇类治疗在解决不孕问题上的不一致结果,与对视黄酸信号调控精子发生的分子机制的不完全理解有关。除了治疗男性生殖障碍外,视黄酸在精子发生中的作用也为男性非激素避孕药具的开发提供了新的思路。本文将探讨三个方面:睾丸中视黄酸的合成和分解、它在精子发生中的作用以及它在男性生殖中的应用。我们的讨论旨在为研究视黄酸信号对精子发生的调节作用提供全面的参考,并为治疗男性生殖问题提供思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d738/11240464/257612338f48/cells-13-01092-g001.jpg

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