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微塑料和纳米塑料污染的紧迫问题:剖析由氧化应激介导的生殖改变

The Pressing Issue of Micro- and Nanoplastic Contamination: Profiling the Reproductive Alterations Mediated by Oxidative Stress.

作者信息

Ferrante Maria Carmela, Monnolo Anna, Del Piano Filomena, Mattace Raso Giuseppina, Meli Rosaria

机构信息

Department of Veterinary Medicine and Animal Productions, University of Naples Federico II, Via F. Delpino 1, 80137 Naples, Italy.

Department of Pharmacy, University of Naples Federico II, Via D. Montesano 49, 80131 Naples, Italy.

出版信息

Antioxidants (Basel). 2022 Jan 19;11(2):193. doi: 10.3390/antiox11020193.

Abstract

Micro- and nanoplastics (MPs/NPs) are among the most widely distributed pollutants in the environment. It has been suggested that exposure to MPs/NPs can trigger toxicity pathways among which inflammation and oxidative stress (OS) play a pivotal role. Once absorbed, MPs/NPs may act locally or access the bloodstream and, following the translocation process, reach several organs and tissues, including the gonads. Notably, MPs/NPs can bioaccumulate in human and murine placenta, opening new scenarios for toxicological evaluations. We review recent studies on the effects of MPs/NPs on the reproductive health in aquatic and terrestrial organisms of both sexes, focusing on the role of OS and the antioxidant defence system failure as the main underlying mechanisms. Alterations in gametogenesis, embryonic and offspring development, and survival have been shown in most studies and often related to a broken redox balance. All these detrimental effects are inversely related to particle size, whereas they are closely linked to shape, plastic polymer type, superficial functionalization, concentration, and time of exposure. To date, the studies provide insights into the health impacts, but no conclusions can be drawn for reproduction toxicity. The main implication of the few studies on antioxidant substances reveals their potential role in mitigating MP-induced toxic effects.

摘要

微塑料和纳米塑料(MPs/NPs)是环境中分布最广泛的污染物之一。有人认为,接触MPs/NPs会引发毒性途径,其中炎症和氧化应激(OS)起着关键作用。一旦被吸收,MPs/NPs可能在局部起作用或进入血液循环,并在转运过程后到达包括性腺在内的多个器官和组织。值得注意的是,MPs/NPs可以在人类和小鼠胎盘中生物累积,为毒理学评估开辟了新的前景。我们综述了近期关于MPs/NPs对两性水生和陆生生物生殖健康影响的研究,重点关注OS的作用以及抗氧化防御系统功能障碍作为主要潜在机制。大多数研究表明,配子发生、胚胎和后代发育以及生存存在改变,且往往与氧化还原平衡的破坏有关。所有这些有害影响都与颗粒大小成反比,而它们与形状、塑料聚合物类型、表面功能化、浓度和暴露时间密切相关。迄今为止,这些研究提供了对健康影响的见解,但对于生殖毒性尚无定论。少数关于抗氧化物质的研究的主要意义揭示了它们在减轻MP诱导的毒性作用方面的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dec/8868557/be9fcf894e73/antioxidants-11-00193-g001.jpg

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