Role of copper in the process of spermatogenesis.

Mateusz Ogórek, Łukasz Gąsior, Olga Pierzchała, Regina Daszkiewicz, Małgorzata Lenartowicz
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引用次数: 31

Abstract

Copper (Cu) is an essential trace element required for the normal development of living organisms. Due to its redox potential, copper is a cofactor in many enzymes responsible for important processes in cells. Copper deficiency has a significant influence on the reduction or the total eradication of copper-dependent enzymes in the body, thereby inhibiting cell life processes. On the other hand, copper is a very reactive element and in its free state, it can trigger the production of large amounts of free radicals, which will consequently lead to the damage of proteins and DNA. Because of those reasons, living organisms have developed precise mechanisms regulating the concentration of copper in cells. Copper also plays a very important role in male fertility. It is an essential element for the production of male gametes. The significant role of copper is also described in the processes of cell division - mitotic and meiotic. Copper-dependent enzymes such as ceruloplasmin, superoxide dismutase SOD1 and SOD3, group of metallothionein and cytochrome c oxidase are present at all stages of gametogenesis as well as in the somatic cells of the testis and in the somatic cells of epididymis. Substantial amounts of copper can also be found in liquids associated with sperm in the epididymis and prostate. Copper also affects the integral androgen distribution in terms of fertility on the line hypothalamic-pituitary-testis. Both copper increase and deficiency leads to a significant reduction in male fertility, which spans the entire spectrum of abnormalities at the sperm level, male gonad, production of hormones and distribution of micronutrients such as zinc and iron. Nowadays, the effects of copper on gametes production have become more important and are connected with the increasing levels of pollution with heavy metals in environment.

铜在精子发生过程中的作用。
铜(Cu)是生物正常发育所必需的微量元素。由于其氧化还原电位,铜是许多负责细胞重要过程的酶的辅助因子。铜缺乏对体内铜依赖酶的减少或完全根除有重大影响,从而抑制细胞的生命过程。另一方面,铜是一种非常活跃的元素,在其自由状态下,它可以引发大量自由基的产生,从而导致蛋白质和DNA的损伤。由于这些原因,生物体已经发展出精确的机制来调节细胞中铜的浓度。铜在男性生育能力方面也起着非常重要的作用。它是产生雄性配子的必要元素。铜在细胞分裂-有丝分裂和减数分裂过程中的重要作用也被描述。铜蓝蛋白、超氧化物歧化酶SOD1和SOD3、金属硫蛋白组和细胞色素c氧化酶等铜依赖酶存在于配子体发生的各个阶段,也存在于睾丸体细胞和附睾体细胞中。在附睾和前列腺中与精子有关的液体中也可以发现大量的铜。铜也会影响下丘脑-垂体-睾丸这条线上雄激素的整体分布。铜的增加和缺乏都会导致男性生育能力的显著下降,这涉及精子水平、男性性腺、激素产生和锌和铁等微量营养素分布的整个异常范围。目前,铜对配子产生的影响越来越重要,并与环境中重金属污染水平的增加有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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