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氟暴露通过下调大鼠睾丸中 Zpbp1、Spaca1 和 Dpy19l2 的表达来阻止精子发生过程中的顶体形成。

Fluoride exposure arrests the acrosome formation during spermatogenesis via down-regulated Zpbp1, Spaca1 and Dpy19l2 expression in rat testes.

机构信息

Shanxi Key Laboratory of Ecological Animal Science and Environmental Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, 030801, China; College of Animal Science and Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, 030801, China.

Shanxi Key Laboratory of Ecological Animal Science and Environmental Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, 030801, China; College of Animal Science and Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, 030801, China.

出版信息

Chemosphere. 2019 Jul;226:874-882. doi: 10.1016/j.chemosphere.2019.04.019. Epub 2019 Apr 5.

Abstract

The exposure and health effects of fluoride are an ongoing topic that has attracted worldwide attention. Fluoride exposure disturbs the testicular development, sexual hormone levels and spermatogenesis. However, as to whether fluoride interferes with acrosome formation which is essential for production of capable spermatozoa during spermatogenesis still remains unclear. The objective was to determine the effects of fluoride on the acrosome formation and to further elucidate the potential mechanism of impaired reproductive function. For this, forty adult rats were assigned into four groups. The control group received distilled water, while the other three groups were treated with 25, 50 and 100 mg NaF/L via drinking water for 56 d, respectively. Testes were processed for total RNA extraction and western blot analysis. Three samples of each group were fixed in 2.5% glutaraldehyde solution for transmission electron microscopy analysis. From the results, we first found that fluoride decreased the expression of mRNA and protein levels of Zpbp1, Spaca1 and Dpy19l2 of seven markers during acrosome biogenesis in testes. Furthermore, fluoride damaged not only the acrosome structure, but also the structure of the nuclear lamina which was observed to be discontinuous and partially missing by transmission electron microscopy. Moreover, the results indicated that the altered structure in nuclear lamina maybe due to reduced LMNB2 expression in testis induced by fluoride. In a nutshell, fluoride exposure could restrain acrosome biogenesis during spermatogenesis and contribute to the elucidation of the underlying mechanisms of fluoride-induced male reproductive toxicity.

摘要

氟化物的暴露和健康影响是一个持续受到全球关注的话题。氟化物暴露会干扰睾丸发育、性激素水平和精子发生。然而,氟化物是否会干扰顶体形成,从而影响精子发生过程中产生有能力的精子,目前仍不清楚。本研究旨在确定氟化物对顶体形成的影响,并进一步阐明其损害生殖功能的潜在机制。为此,将 40 只成年大鼠分为 4 组。对照组给予蒸馏水,其余 3 组分别通过饮用水给予 25、50 和 100mg/L 的 NaF,连续处理 56d。提取睾丸总 RNA 并进行 Western blot 分析。每组取 3 个样本用 2.5%戊二醛溶液固定,用于透射电镜分析。结果表明,我们首先发现,氟化物降低了精子发生过程中 7 个标志物的 Zpbp1、Spaca1 和 Dpy19l2 的 mRNA 和蛋白水平。此外,氟化物不仅破坏了顶体结构,还破坏了核纤层的结构,透射电镜观察到核纤层结构不连续,部分缺失。而且,结果表明,由于氟化物诱导睾丸中 LMNB2 表达减少,核纤层的改变结构可能是由于 LMNB2 表达减少所致。总之,氟化物暴露可抑制精子发生过程中的顶体形成,有助于阐明氟化物引起的男性生殖毒性的潜在机制。

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