汞的神经毒性:一个具有当代意义的老问题。

Advances in neurotoxicology Pub Date : 2021-01-01 Epub Date: 2021-02-02 DOI:10.1016/bs.ant.2021.01.001
Vasco Branco, Michael Aschner, Cristina Carvalho
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引用次数: 0

摘要

汞的毒性作用多种多样,取决于具体的化合物和接触途径。不过,神经毒性对健康的影响最令毒理学家担忧。这一点在胎儿发育过程中尤为明显,因为胎儿的神经毒性效应比成人严重得多,毒性阈值也更低。在此,我们将回顾有关汞化合物(汞蒸气、甲基汞和乙基汞)神经毒性的主要概念,从接触途径到导致脑沉积和神经毒性效应发展的毒物动力学特性。尽管从二十世纪下半叶开始,有关汞化合物神经毒性的研究取得了长足的进步,但在毒性机制方面仍存在一些灰色地带。因此,我们强调过去二十年中有关汞分子相互作用导致神经毒性效应的研究进展。研究重点包括汞暴露导致的谷氨酸信号转导中断和兴奋毒性,以及与半胱氨酸和硒半胱氨酸等氧化还原活性残基的相互作用,这是汞破坏氧化还原平衡的前提。我们还探讨了中枢神经系统的免疫毒性效应,即小胶质细胞和星形胶质细胞的激活如何调节发育神经毒性,这是当代研究的一个重要课题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neurotoxicity of mercury: an old issue with contemporary significance.

Mercury exerts a variety of toxic effects, depending on the specific compound and route of exposure. However, neurotoxicity in virtue of its consequence to health causes the greatest concern for toxicologists. This is particularly true regarding fetal development, where neurotoxic effects are much more severe than in adults, and the toxicity threshold is lower. Here, we review the major concepts regarding the neurotoxicity of mercury compounds (mercury vapor; methylmercury and ethylmercury), from exposure routes to toxicokinetic particularities leading to brain deposition and the development of neurotoxic effects. Albeit research on the neurotoxicity of mercury compounds has significantly advanced from the second half of the twentieth century onwards, several grey areas regarding the mechanism of toxicity still exist. Thus, we emphasize research advances during the last two decades concerning the molecular interactions of mercury which cause neurotoxic effects. Highlights include the disruption of glutamate signaling and excitotoxicity resulting from exposure to mercury and the interaction with redox active residues such as cysteines and selenocysteines which are the premise accounting for the disruption of redox homeostasis caused by mercurials. We also address how immunotoxic effects at the CNS, namely microglia and astrocyte activation modulate developmental neurotoxicity, a major topic in contemporary research.

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