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关于氟化物和砷介导的对精子附睾成熟障碍的分子观点:简要综述。

Molecular perspective concerning fluoride and arsenic mediated disorders on epididymal maturation of spermatozoa: A concise review.

机构信息

568916Department of Life Sciences, Presidency University, Kolkata, West Bengal, India.

出版信息

Hum Exp Toxicol. 2021 Dec;40(12):2025-2038. doi: 10.1177/09603271211021474. Epub 2021 Jun 4.

Abstract

Epididymis is a complex tubular structure of male reproductive system where spermatozoa undergo maturation and gain the fertilizing ability. Epididymal pseudostratified columnar epithelium with different cell types play imperative role by their secretory properties and enrich the luminal microenvironment necessary for achieving spermatozoal motility. During epididymal transit several secretory proteins like P26h, SPAG11, HSPD1 and many others are deposited on spermatozoal surface. At the same time spermatozoal proteins are also modified in this intraluminal milieu, which include cyritestin, fertilin, CE9 and others. Natural and anthropogenic activities disclose various environmental pollutants which affect different physiological systems of animals and human being. Likewise, reproductive system is also being affected. Fluoride causes structural alterations of caput and cauda segments of epididymis. Redox homeostasis and functional integrity are also altered due to diminished activities of SOD1, GR, Crisp2, Lrp2 and other important proteins. On the contrary arsenic affects mostly on cauda segment. Redox imbalance and functional amendment in epididymis have been observed with arsenic revelation as evidenced by altered genomic appearance of SOD, GST, catalase, Ddx3Y, VEGF and VEGFR2. This review is dealt with structure-function interplay in normal epididymal spermatozoal maturation along with subsequent complications developed under fluoride and arsenic toxicities.

摘要

附睾是男性生殖系统的一个复杂的管状结构,精子在此经历成熟并获得受精能力。附睾假复层柱状上皮中的不同细胞类型通过其分泌特性发挥重要作用,丰富了精子运动所需的管腔微环境。在附睾转运过程中,多种分泌蛋白(如 P26h、SPAG11、HSPD1 等)被沉积在精子表面。同时,精子蛋白在这个管腔环境中也发生了修饰,包括 cyritestin、fertilin、CE9 等。自然和人为活动揭示了各种环境污染物,这些污染物会影响动物和人类的不同生理系统。同样,生殖系统也受到影响。氟化物会导致附睾头部和尾部结构发生改变。由于 SOD1、GR、Crisp2、Lrp2 等重要蛋白活性降低,氧化还原平衡和功能完整性也会发生改变。相比之下,砷主要影响尾部。砷暴露会导致附睾氧化还原失衡和功能改变,这可以从 SOD、GST、过氧化氢酶、Ddx3Y、VEGF 和 VEGFR2 等基因表达的改变中得到证明。本文综述了正常附睾精子成熟过程中的结构-功能相互作用,以及氟化物和砷毒性下随后出现的并发症。

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