Department of Regulatory and Forensic Toxicology, Institute of Medical Expertises in Łódź, ul. Aleksandrowska 67/93, 91-205 Łódź, Poland.
Institute of Medical Expertises in Łódź, ul. Aleksandrowska 67/93, 91-205 Łódź, Poland.
Sci Total Environ. 2023 Sep 10;890:164241. doi: 10.1016/j.scitotenv.2023.164241. Epub 2023 May 24.
Novichoks constitute a relatively new class of nerve agents of extreme toxicity that we have had the opportunity to experience three times already. After the first case (Salisbury, UK), a public debate about Novichoks began, which resulted in the realisation of the nature of these chemicals. From a social security point of view, examining their properties, especially toxicological and environmental aspects, are crucial. After the CWC (Chemical Warfare Agent) list update, the candidate structures for the Novichoks may be over 10,000 compounds. It would be extremely laborious to conduct experimental research for each. Understanding their environmental persistence and health hazards is an essential national issue. Moreover, due to the high risk posed by contact with hazardous Novichok substances, in silico research was applied to estimate hydrolysis and biodegradation safely. The present study elucidates, using QSAR models, the environmental fate of the Novichoks studied (n = 17). The results indicate that Novichoks released into the environment hydrolyse at various rates, from extremely fast (<1 day) to very slow (more than a year). Furthermore, ultimate biodegradation from weeks to months is expected for most compounds, which classifies them as relatively difficult biodegradable. Applying reliable in silico methods (QSAR Toolbox and EPI Suite) for predicting various parameters is crucial to prepare for the upcoming usage of Novichoks.
新型类神经毒剂是一种毒性极强的新型毒剂,我们已经有过 3 次接触这类毒剂的经历。第一次发生在英国索尔兹伯里,这引发了一场有关新型类神经毒剂的公开辩论,也让人们认识到了这类化学物质的性质。从保障社会安全的角度来看,检验它们的性质,尤其是毒理学和环境方面的性质至关重要。《化学武器公约》更新后,新型类神经毒剂的候选结构可能超过 10000 种。逐一进行实验研究是极其费力的。了解它们在环境中的持久性和对健康的危害是一个国家的当务之急。此外,由于接触危险的新型类神经毒剂物质存在高风险,因此采用了计算机模拟研究来安全地估计水解和生物降解。本研究使用定量构效关系模型阐明了所研究的新型类神经毒剂(n=17)的环境命运。结果表明,新型类神经毒剂在环境中的水解速度不同,从极快(<1 天)到非常慢(超过一年)。此外,大多数化合物预计将在数周至数月内达到最终生物降解,这将它们归类为相对难以生物降解的物质。应用可靠的计算机模拟方法(QSAR Toolbox 和 EPI Suite)预测各种参数对于即将使用新型类神经毒剂的情况至关重要。