Human health risk assessment of 6:2 Cl-PFESA through quantitative in vitro to in vivo extrapolation by integrating cell-based assays, an epigenetic key event, and physiologically based pharmacokinetic modeling

基于生理学的药代动力学模型 体内 药理学 风险评估 体外毒理学 毒性 药代动力学 生物信息学 化学 生物 计算生物学 生物化学 生物技术 计算机科学 基因 计算机安全 有机化学
作者
Chuanhai Li,Lidan Jiang,Dong H. Zhang,Yuan Qi,Xinyi Wang,Yuan Jin,Xinya Liu,Yongfeng Lin,Jiao Luo,Lin Xu,Kunming Zhao,Dianke Yu
出处
期刊:Environment International [Elsevier BV]
卷期号:173: 107846-107846 被引量:16
标识
DOI:10.1016/j.envint.2023.107846
摘要

Human health risk assessment of chemicals is essential but often relies on time-consuming and animal and labor-extensive procedures. Here, we develop a population-based, quantitative in vitro to in vivo extrapolation (QIVIVE) approach which depended on cellular effects monitored by in vitro assays, considered chemical internal concentration determined by LC-MS/MS, extrapolated into in vivo target tissue concentration through physiologically based pharmacokinetic (PBPK) modelling, and assessed populational health risk using in silico modelling. By applying this QIVIVE approach to 6:2 chlorinated polyfluorinated ether sulfonate (6:2 Cl-PFESA), as a representative of the emerging pollutants, we find that 6:2 Cl-PFESA disturbed lipid homeostasis in HepG2 cells through enhancement of lipid accumulation and fatty acid β-oxidation, during which miR-93-5p served as a key event towards toxicity and thus, could serve as an efficient toxicity marker for risk assessment; further, the disruption potency of lipid homeostasis of 6:2 Cl-PFESA for the most of studied populations in China might be of moderate concern. Together, our approach improved the reliability of QIVIVE during human health risk assessment, which can readily be used for other chemicals.
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