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大鼠睾丸对纳米镍粒子比微镍粒子更敏感:毒理学评价。

Higher Sensitivity of Rat Testes to Nano Nickel than Micro Nickel Particles: A Toxicological Evaluation.

机构信息

Department of Toxicology, Ch. Charan Singh University, Meerut, 250 004, India.

出版信息

Reprod Sci. 2024 Nov;31(11):3521-3531. doi: 10.1007/s43032-024-01694-6. Epub 2024 Oct 4.

Abstract

Present investigations were undertaken to record the vulnerability of testis to nickel oxide nano and microparticles in Wistar rat with special reference to their preferred bioaccumulation, consequent generation of reactive species, reciprocal influence on testosterone synthesis, DNA damage in spermatids and histopathological changes. Suitable numbers of rats were gavaged NiONPs or NiOMPs (5 mg/kg b.w.each) for 15 and 30 days. Testes en bloc were removed and processed for the estimation of selected parameters. Results showed that rat testes could accumulate nickel in an exposure time dependent manner. Generation of malondialdehyde, a denominator of ROS, increased significantly in the testes of NiONPs treated rats. Moreover, serum testosterone values also increased in NiONPs treated rats. Higher DNA damage in sperms was also recorded. Nano and microparticles of nickel, both could induce specific dose and time dependent lesions in the testis of rat. Histopathological results revealed degeneration of germinal epithelium and spermatocytes; hypertrophy of seminiferous tubules and necrosis. SEM results also indicated specific morphological changes in cellular components of tubules. This study suggests that testis is also vulnerable to the adverse effects of NiONPs alike liver and kidney. Both micro and nanoparticles of nickel elicited differential effects in a dose and exposure time dependent manner. However, NiONPs induced greater overall toxicity than NiOMPs. The results are expected to be helpful in determining the human reproductive health risks, associated with environmental/ occupational exposure to nanoparticles of nickel.

摘要

目前的研究旨在记录睾丸对氧化镍纳米和微米颗粒的易感性,特别关注它们的优先生物积累、随后产生的活性物质、对精子发生中睾酮合成的相互影响、精子细胞中的 DNA 损伤和组织病理学变化。将适量的大鼠用 NiONPs 或 NiOMPs(各 5mg/kg bw)灌胃 15 和 30 天。整块睾丸被取出并进行了一系列参数的检测。结果表明,大鼠睾丸可以以暴露时间依赖的方式积累镍。在 NiONPs 处理的大鼠睾丸中,丙二醛(ROS 的一个指标)的生成显著增加。此外,NiONPs 处理的大鼠血清睾酮值也增加。精子中的 DNA 损伤也更高。镍的纳米和微米颗粒都可以在大鼠睾丸中引起特定剂量和时间依赖性损伤。组织病理学结果显示生殖上皮和精母细胞退化;曲细精管肥大和坏死。SEM 结果还表明,管腔细胞成分发生了特定的形态变化。这项研究表明,睾丸也容易受到 NiONPs 等肝和肾的不利影响。镍的微纳米颗粒以剂量和暴露时间依赖的方式引起不同的效应。然而,NiONPs 引起的总体毒性大于 NiOMPs。这些结果有望有助于确定与环境/职业暴露于镍纳米颗粒相关的人类生殖健康风险。

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