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甲基汞在神经胶质细胞中的细胞内积累和 DNA 损伤。

Intracellular accumulation and DNA damage caused by methylmercury in glial cells.

机构信息

Programa de Pós Graduação em Epidemiologia e vigilância em Saúde, Instituto Evandro Chagas, Ananindeua, Pará, Brazil.

Seção de Bacteriologia, Instituto Evandro Chagas, Ananindeua, Pará, Brazil.

出版信息

J Biochem Mol Toxicol. 2022 Oct;36(10):e23170. doi: 10.1002/jbt.23170. Epub 2022 Jul 13.

Abstract

Mercury is widely used in industrial and extractive processes, and the improper disposal of waste or products containing this metal produces a significant impact on ecosystems, causing adverse effects on living organisms, including humans. Exposure to methylmercury, a highly toxic organic compound, causes important neurological and developmental impairments. Recently, the genotoxicity of mercurial compounds has gained prominence as one of the possible mechanisms associated with the neurological effects of mercury, mostly by disturbing the mitotic spindle and causing chromosome loss. In this sense, it is important to investigate if these compounds can also cause direct damage to DNA, such as single and double-strand breaks. Thus, the aim of this study was to investigate the cytotoxic and genotoxic potential of methylmercury in cell lines derived from neurons (B103) and glia (C6), exposed to methylmercury (MeHg) for 24 h, by analyzing cell viability, metabolic activity, and damage to DNA and chromosomes. We found that in comparison to the neuronal cell line, glial cells showed higher tolerance to MeHg, and therefore a higher LC and consequent higher intracellular accumulation of Hg, which led to the occurrence of several genotoxic effects, as evidenced by the presence of micronuclei, bridges, sprouts, and chromosomal aberrations.

摘要

汞被广泛应用于工业和采矿业的生产过程中,而对于含有该金属的废物或产品处理不当,将对生态系统产生重大影响,对包括人类在内的生物体造成不良影响。暴露于具有高度毒性的有机化合物甲基汞会导致重要的神经和发育损伤。最近,汞化合物的遗传毒性已成为与汞的神经毒性相关的可能机制之一,主要是通过干扰有丝分裂纺锤体并导致染色体丢失。在这方面,研究这些化合物是否也会对 DNA 造成直接损伤,如单链和双链断裂,这一点非常重要。因此,本研究旨在通过分析细胞活力、代谢活性以及 DNA 和染色体损伤,来研究神经元(B103)和神经胶质细胞(C6)来源的细胞系在暴露于甲基汞 24 小时后,甲基汞的细胞毒性和遗传毒性。与神经元细胞系相比,神经胶质细胞对 MeHg 的耐受性更高,因此 LC 更高,汞的细胞内积累也更高,这导致了多种遗传毒性效应的发生,这一点可通过微核、桥、芽和染色体畸变的存在得到证明。

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