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是否应考虑使用依布硒啉治疗汞中毒?一篇小型综述。

Should ebselen be considered for the treatment of mercury intoxication? A minireview.

作者信息

Barbosa Nilda V, Aschner Michael, Tinkov Alexey A, Farina Marcelo, Rocha João Batista Teixeira da

机构信息

Departamento de Bioquímica e Biologia Molecular, Centro de Ciências Naturais e Exatas, Universidade Federal de Santa Maria, Santa Maria, Brazil.

Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, NY, USA.

出版信息

Toxicol Mech Methods. 2024 Jan;34(1):1-12. doi: 10.1080/15376516.2023.2258958. Epub 2024 Jan 1.

Abstract

Mercury is a ubiquitous environmental contaminant and can be found in inorganic (Hg, Hg and Hg) and organic forms (chiefly CHHg or MeHg). The main route of human, mammals and bird exposure occurs predatory fish ingestion. Occupational exposure to Hg (and Hg) can also occur; furthermore, in gold mining areas the exposure to inorganic Hg can also be high. The toxicity of electrophilic forms of Hg (EHg) is mediated by disruption of thiol (-SH)- or selenol (-SeH)-containing proteins. The therapeutic approaches to treat methylmercury (MeHg), Hg and Hg are limited. Here we discuss the potential use of ebselen as a potential therapeutic agent to lower the body burden of Hg in man. Ebselen is a safe drug for humans and has been tested in clinical trials (for instance, brain ischemia, noise-induce hearing loss, diabetes complications, bipolar disorders) at doses varying from 400 to 3600 mg per day. Two clinical trials with ebselen in moderate and severe COVID are also approved. Ebselen can be metabolized to an intermediate with -SeH (selenol) functional group, which has a greater affinity to electrophilic Hg (EHg) forms than the available thiol-containing therapeutic agents. Accordingly, as observed and rodent models Ebselen exhibited protective effects against MeHg, indicating its potential as a therapeutic agent to treat MeHg overexposure. The combined use of ebselen with thiol-containing molecules (e.g. N-acetylcysteine and enaramide)) is also commented, because they can have synergistic protective effects against MeHg.

摘要

汞是一种普遍存在的环境污染物,可分为无机形式(Hg、Hg和Hg)和有机形式(主要是CHHg或甲基汞)。人类、哺乳动物和鸟类接触汞的主要途径是通过捕食鱼类。职业性接触汞(和Hg)也可能发生;此外,在金矿开采地区,无机汞的接触量也可能很高。亲电形式的汞(EHg)的毒性是通过破坏含硫醇(-SH)或含硒醇(-SeH)的蛋白质来介导的。治疗甲基汞(MeHg)、Hg和Hg的方法有限。在这里,我们讨论了依布硒仑作为一种潜在治疗剂来降低人体汞负荷的潜在用途。依布硒仑对人类是一种安全的药物,并且已经在临床试验中进行了测试(例如,脑缺血、噪声性听力损失、糖尿病并发症、双相情感障碍),每天的剂量从400毫克到3600毫克不等。两项关于依布硒仑治疗中度和重度新冠肺炎的临床试验也已获批。依布硒仑可以代谢为具有-SeH(硒醇)官能团的中间体,该中间体对亲电汞(EHg)形式的亲和力比现有的含硫醇治疗剂更大。因此,正如在[未提及具体观察对象]和啮齿动物模型中所观察到的,依布硒仑对甲基汞表现出保护作用,表明其作为治疗甲基汞过度暴露的治疗剂的潜力。还讨论了依布硒仑与含硫醇分子(如N-乙酰半胱氨酸和依那酰胺)的联合使用,因为它们对甲基汞可能具有协同保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7665/10841883/b401e871cccf/nihms-1934010-f0001.jpg

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本文引用的文献

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Molecular Fates of Organometallic Mercury in Human Brain.金属汞在人脑内的分子命运
ACS Chem Neurosci. 2022 Jun 15;13(12):1756-1768. doi: 10.1021/acschemneuro.2c00166. Epub 2022 May 11.

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