Reversibility of polystyrene nanoplastics-induced disruption of testosterone biosynthesis in mice: The role of histone modifications

IF 7.6 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Pollution Pub Date : 2025-02-01 DOI:10.1016/j.envpol.2024.125506
Yan-Yang Lu , Rui Yang , Meiyi Cao , Lu Lu , Wanqing Zhu , Weizhen Hua , Meiping Tian , Yan Sun , Qingyu Huang
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Abstract

Nanoplastics (NPs) exposure could disrupt the synthesis of steroid hormones, thereby posing a potential threat to male reproductive health. However, the existing comprehension of the molecular mechanisms participating in this process remains limited, and the reversibility of NPs-triggered male reproductive toxicity is poorly understood. This investigation focused on the impact of histone modification on testosterone production in mice under long-term exposure to environmentally relevant doses of polystyrene nanoplastics (PS-NPs). The results showed 500 nm and 100 nm PS-NPs could accumulate in mouse testis, with a subsequent significant decrease following a period of self-recovery. The testosterone levels significantly increased after exposure to 500 nm and 100 nm PS-NPs, and the protein levels of CYP11A1, CYP17A1, and 17β-HSD were upregulated. Furthermore, PS-NPs exposure decreased the levels of multiple histone modifications (H3K9me1/2, H3K4me2/3, and H3K4/9ac) while increased H3K9me3 in mouse testis. Histone H3K9 methylation is linked with gene inhibition, whereas H3K4 methylation and H3K4/9 acetylation contribute to gene activation. ChIP analysis further confirmed that H3K9me2 was markedly decreased in the promoter regions of Cyp11a1 and Hsd17b. Additionally, H3K9me2 demethylase Jhdm2a was significantly increased. These findings suggested that low-level PS-NPs inhibited H3K9me2 through upregulating Jhdm2a, thereby activating key steroidogenic proteins CYP11A1 and 17β-HSD, ultimately promoting testosterone synthesis in mouse testis. Importantly, the changes in testosterone, steroidogenic proteins and histone modifications were effectively reversed upon the cessation of exposure to 500 nm and 100 nm PS-NPs. Collectively, these discoveries offer fresh perspectives on the epigenetic mechanisms underlying male reproductive endocrine disruption caused by PS-NPs, and contribute to assessing the human health hazards associated with exposure to environmental NPs.

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聚苯乙烯纳米塑料诱导小鼠睾酮生物合成破坏的可逆性:组蛋白修饰的作用
纳米塑料(NPs)暴露可能破坏类固醇激素的合成,从而对男性生殖健康构成潜在威胁。然而,对参与这一过程的分子机制的现有理解仍然有限,并且对nps引发的男性生殖毒性的可逆性知之甚少。本研究的重点是在长期暴露于环境相关剂量聚苯乙烯纳米塑料(PS-NPs)的小鼠中,组蛋白修饰对睾丸激素产生的影响。结果表明,500 nm和100 nm的PS-NPs可在小鼠睾丸中积累,并在一段时间的自我恢复后显著减少。500 nm和100 nm PS-NPs处理后,睾酮水平显著升高,CYP11A1、CYP17A1和17β-HSD蛋白水平上调。此外,PS-NPs暴露降低了小鼠睾丸中多种组蛋白修饰(H3K9me1/2、H3K4me2/3和H3K4/9ac)的水平,同时增加了H3K9me3的水平。组蛋白H3K9甲基化与基因抑制有关,而H3K4甲基化和H3K4/9乙酰化有助于基因激活。ChIP分析进一步证实,H3K9me2在Cyp11a1和Hsd17b的启动子区域显著降低。H3K9me2去甲基化酶Jhdm2a显著升高。这些发现表明,低水平PS-NPs通过上调Jhdm2a抑制H3K9me2,从而激活关键的类固醇生成蛋白CYP11A1和17β-HSD,最终促进小鼠睾丸激素合成。重要的是,在停止暴露于500 nm和100 nm PS-NPs后,睾酮,类固醇蛋白和组蛋白修饰的变化有效逆转。总的来说,这些发现为PS-NPs引起的男性生殖内分泌紊乱的表观遗传机制提供了新的视角,并有助于评估与暴露于环境NPs相关的人类健康危害。
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来源期刊
Environmental Pollution
Environmental Pollution 环境科学-环境科学
CiteScore
16.00
自引率
6.70%
发文量
2082
审稿时长
2.9 months
期刊介绍: Environmental Pollution is an international peer-reviewed journal that publishes high-quality research papers and review articles covering all aspects of environmental pollution and its impacts on ecosystems and human health. Subject areas include, but are not limited to: • Sources and occurrences of pollutants that are clearly defined and measured in environmental compartments, food and food-related items, and human bodies; • Interlinks between contaminant exposure and biological, ecological, and human health effects, including those of climate change; • Contaminants of emerging concerns (including but not limited to antibiotic resistant microorganisms or genes, microplastics/nanoplastics, electronic wastes, light, and noise) and/or their biological, ecological, or human health effects; • Laboratory and field studies on the remediation/mitigation of environmental pollution via new techniques and with clear links to biological, ecological, or human health effects; • Modeling of pollution processes, patterns, or trends that is of clear environmental and/or human health interest; • New techniques that measure and examine environmental occurrences, transport, behavior, and effects of pollutants within the environment or the laboratory, provided that they can be clearly used to address problems within regional or global environmental compartments.
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