Suppr超能文献

精子头部塑形的分子见解及其在人类男性生育中的作用

Molecular insights into sperm head shaping and its role in human male fertility.

作者信息

He Jiaxin, Lin Xinle, Tan Chen, Li Yong, Su Lilan, Lin Ge, Tan Yue-Qiu, Tu Chaofeng

机构信息

Institute of Reproduction and Stem Cell Engineering, NHC Key Laboratory of Human Stem Cell and Reproductive Engineering, School of Xiangya Basic Medical Sciences, Central South University, Changsha, Hunan, China.

Clinical Research Center for Reproduction and Genetics in Hunan Province, Reproductive and Genetic Hospital of CITIC-XIANGYA, Changsha, Hunan, China.

出版信息

Hum Reprod Update. 2025 Mar 3. doi: 10.1093/humupd/dmaf003.

Abstract

BACKGROUND

Sperm head shaping, controlled by the acrosome-acroplaxome-manchette complex, represents a significant morphological change during spermiogenesis and involves numerous proteins expressed in a spatially and temporally specific manner. Defects in sperm head shaping frequently lead to teratozoospermia concomitant with oligozoospermia and asthenozoospermia, but the pathogenic mechanism underlying sperm head shaping, and its role in male infertility, remain poorly understood.

OBJECTIVE AND RATIONALE

This review aims to summarize the mechanism underlying sperm head shaping, reveal the relationship between gene defects associated with sperm head shaping and male infertility in humans and mice, and explore potential clinical improvements in ICSI treatment.

SEARCH METHODS

We searched the PubMed database for articles published in English using the keyword 'sperm head shaping' in combination with the following terms: 'acrosome formation', 'proacrosomal vesicles (PAVs)', 'manchette', 'perinuclear theca (PT)', 'chromatin condensation', 'linker of nucleoskeleton and cytoskeleton (LINC) complex', 'histone-to-protamine (HTP) transition', 'male infertility', 'ICSI', and 'artificial oocyte activation (AOA)'. The selected publications until 1 August 2024 were critically summarized, integrated, and thoroughly discussed, and the irrelevant literature were excluded.

OUTCOMES

A total of 6823 records were retrieved. After careful screening, integrating relevant literature, and excluding articles unrelated to the topic of this review, 240 articles were ultimately included in the analysis. Firstly, we reviewed the important molecular events and structures integral to sperm head shaping, including PAV formation to fusion, acrosome attachment to the nucleus, structure and function of the manchette, PT, chromatin condensation, and HTP transition. Then, we set forth human male infertility associated with sperm head shaping and identified genes related to sperm head shaping resulting in teratozoospermia concomitant with oligozoospermia and asthenozoospermia. Finally, we summarized the outcomes of ICSI in cases of male infertility resulting from mutations in the genes associated with sperm head shaping, as well as the ICSI outcomes through AOA for infertile men with impaired sperm head.

WIDER IMPLICATIONS

Understanding the molecular mechanisms of sperm head shaping and its relationship with human male infertility holds profound clinical implications, which may contribute to risk prediction, genetic diagnosis, and the potential treatment of human male infertility.

摘要

背景

精子头部塑形由顶体-顶体板-环层片复合体控制,是精子发生过程中显著的形态学变化,涉及众多以时空特异性方式表达的蛋白质。精子头部塑形缺陷常导致畸形精子症,并伴有少精子症和弱精子症,但精子头部塑形的致病机制及其在男性不育中的作用仍知之甚少。

目的与理论依据

本综述旨在总结精子头部塑形的机制,揭示与精子头部塑形相关的基因缺陷与人类和小鼠男性不育之间的关系,并探索卵胞浆内单精子注射(ICSI)治疗的潜在临床改进方法。

检索方法

我们在PubMed数据库中检索以英文发表的文章,关键词为“精子头部塑形”,并结合以下术语:“顶体形成”、“前顶体小泡(PAV)”、“环层片”、“核周层(PT)”、“染色质凝聚”、“核骨架与细胞骨架连接(LINC)复合体”、“组蛋白-鱼精蛋白(HTP)转换”、“男性不育”、“ICSI”和“人工卵母细胞激活(AOA)”。对截至2024年8月1日选定的出版物进行了批判性总结、整合和深入讨论,并排除了无关文献。

结果

共检索到6823条记录。经过仔细筛选、整合相关文献并排除与本综述主题无关的文章后,最终纳入分析的文章有240篇。首先,我们回顾了精子头部塑形所必需的重要分子事件和结构,包括PAV形成至融合、顶体与细胞核附着、环层片、PT、染色质凝聚和HTP转换的结构与功能。然后,我们阐述了与精子头部塑形相关的人类男性不育情况,并确定了导致畸形精子症并伴有少精子症和弱精子症的与精子头部塑形相关的基因。最后,我们总结了因与精子头部塑形相关基因发生突变导致男性不育的ICSI治疗结果,以及对精子头部受损的不育男性通过AOA进行ICSI治疗的结果。

更广泛的意义

了解精子头部塑形的分子机制及其与人类男性不育的关系具有深远的临床意义,这可能有助于男性不育的风险预测、基因诊断和潜在治疗。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验