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HHCB的功能修饰:获得环境友好型衍生物的策略。

Functional modification of HHCB: Strategy for obtaining environmentally friendly derivatives.

作者信息

Li Xixi, Gu Wenwen, Chen Bing, Zhu Zhiwen, Zhang Baiyu

机构信息

Northern Region Persistent Organic Pollution Control (NRPOP) Laboratory, Faculty of Engineering and Applied Science, Memorial University, St. John's, Newfoundland, Canada A1B 3X5.

MOE Key Laboratory of Resources and Environmental Systems Optimization, North China Electric Power University, Beijing 102206, China.

出版信息

J Hazard Mater. 2021 Aug 15;416:126116. doi: 10.1016/j.jhazmat.2021.126116. Epub 2021 May 25.

Abstract

Galaxolide (HHCB), one of the most widely used synthetic musks in personal care products (PCPs), has been recognized as an emerging contaminant with potential human health concerns. To overcome such adverse effects, a systematic molecular design, screening and performance evaluation approach was developed to generate functionally improved and environmentally friendly HHCB derivatives. Among the 90 designed HHCB derivatives, 15 were screened with improved functional properties (i.e., odor stability and intensity) and less environmental impacts (i.e., lower bio-toxicity, bio-accumulation ability, and mobility) using 3D-QSAR models and density functional theory methods. Their human health risks were then assessed by toxicokinetic analysis, which narrowed the candidates to four. Derivative 7, the designed molecule with the least dermal adsorption potential, was evaluated for its interaction with other PCPs additives (i.e., anti-photosensitivity materials and moisturizer) and such impacts on human health risks using molecular docking and molecular dynamic simulation. The environmental fate of Derivative 7 after transformation (i.e., photodegradation, biotransformation, and chlorination) was also discussed. Biotransformation and chlorination were recognized as optimum options for Derivative 7 mitigation. This study provided the theoretical basis for the design of functionally improved and environmentally friendly HHCB alternatives and advanced the understanding of their environmental behaviors and health risks.

摘要

佳乐麝香(HHCB)是个人护理产品(PCPs)中使用最广泛的合成麝香之一,已被认定为一种对人类健康存在潜在威胁的新兴污染物。为克服此类不利影响,开发了一种系统的分子设计、筛选和性能评估方法,以生成功能得到改善且环境友好的HHCB衍生物。在设计的90种HHCB衍生物中,利用三维定量构效关系(3D-QSAR)模型和密度泛函理论方法筛选出了15种具有改善功能特性(即气味稳定性和强度)且对环境影响较小(即较低的生物毒性、生物累积能力和迁移性)的衍生物。随后通过毒代动力学分析评估了它们对人类健康的风险,将候选物范围缩小至4种。对具有最低皮肤吸附潜力的设计分子衍生物7,利用分子对接和分子动力学模拟评估了其与其他个人护理产品添加剂(即抗光敏材料和保湿剂)的相互作用以及对人类健康风险的此类影响。还讨论了衍生物7在转化(即光降解、生物转化和氯化)后的环境归宿。生物转化和氯化被认为是减轻衍生物7影响的最佳选择。本研究为功能得到改善且环境友好的HHCB替代品的设计提供了理论依据,并增进了对其环境行为和健康风险的理解。

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