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纳米材料内分泌毒性及对激素分泌紊乱作用机制的研究进展

Advances in endocrine toxicity of nanomaterials and mechanism in hormone secretion disorders.

机构信息

Key Laboratory of Environmental Medicine and Engineering, Ministry of Education, School of Public Health, Southeast University, Nanjing, China.

出版信息

J Appl Toxicol. 2022 Jul;42(7):1098-1120. doi: 10.1002/jat.4266. Epub 2021 Dec 21.

Abstract

The size of nanoparticles is about 1-100 nm. People are exposed to nanoparticles in environmental pollutants from ancient times to the present. With the maturity of nanotechnology in the past two decades, the production of manufactured nanomaterials is rapidly increasing and they are used in a wide range of aerospace, medicine, food, and industrial applications. However, both natural and manufactured nanomaterials have been proved to pose a threat to diverse organs and systems. The endocrine system is critical to maintaining homeostasis. Endocrine disorders are associated with many diseases, including cancer, reduced fertility, and metabolic diseases. Therefore, we review the literatures dealing with the endocrine toxicity of nanomaterial. This review provides an exhaustive description of toxic effects of several common nanomaterials in the endocrine system; more involved are reproductive endocrinology. Then physicochemical factors that determine the endocrine toxicity of nanomaterials are discussed. Furthermore, oxidative stress, changes in steroid production and metabolic enzymes, organelle disruption, and alterations in signal pathways are introduced as potential mechanisms that may cause changes in hormone levels. Finally, we suggest that a risk assessment of endocrine toxicity based on standard procedures and consideration of endocrine disrupting effects of nanomaterials in the field and its environmental and population effects could be future research directions for endocrine toxicity of nanomaterials.

摘要

纳米颗粒的大小约为 1-100nm。从古至今,人们一直生活在环境污染物中,接触着纳米颗粒。在过去二十年中,纳米技术逐渐成熟,人工制造纳米材料的产量迅速增加,它们被广泛应用于航天、医学、食品和工业等领域。然而,无论是天然纳米材料还是人工制造纳米材料,都已被证明会对多种器官和系统构成威胁。内分泌系统对维持体内平衡至关重要。内分泌紊乱与许多疾病有关,包括癌症、生育能力下降和代谢疾病。因此,我们综述了有关纳米材料内分泌毒性的文献。本综述全面描述了几种常见纳米材料对内分泌系统的毒性作用,其中涉及生殖内分泌学。然后讨论了决定纳米材料内分泌毒性的理化因素。此外,还介绍了氧化应激、类固醇生成和代谢酶的变化、细胞器破坏以及信号通路改变等可能导致激素水平变化的潜在机制。最后,我们建议基于标准程序对内分泌毒性进行风险评估,并考虑纳米材料在环境和人群中的内分泌干扰效应,这可能是纳米材料内分泌毒性研究的未来方向。

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