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双酚和邻苯二甲酸酯化合物与未改性和肉碱改性蒙脱石粘土相互作用的见解。

Insights into the interactions of bisphenol and phthalate compounds with unamended and carnitine-amended montmorillonite clays.

作者信息

Orr Asuka A, He Shujun, Wang Meichen, Goodall Alicia, Hearon Sara E, Phillips Timothy D, Tamamis Phanourios

机构信息

Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, TX, 77843, USA.

Veterinary Integrative Biosciences Department, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX, 77843, USA.

出版信息

Comput Chem Eng. 2020 Dec 5;143. doi: 10.1016/j.compchemeng.2020.107063. Epub 2020 Aug 21.

Abstract

Montmorillonite clays could be promising sorbents to mitigate toxic compound exposures. Bisphenols A (BPA) and S (BPS) as well as phthalates, dibutyl phthalate (DBP) and di-2-ethylhexyl phthalate (DEHP), are ubiquitous environmental contaminants linked to adverse health effects. Here, we combined computational and experimental methods to investigate the ability of montmorillonite clays to sorb these compounds. Molecular dynamics simulations predicted that parent, unamended, clay has higher binding propensity for BPA and BPS than for DBP and DEHP; carnitine-amended clay improved BPA and BPS binding, through carnitine simultaneously anchoring to the clay through its quaternary ammonium cation and forming hydrogen bonds with BPA and BPS. Experimental isothermal analysis confirmed that carnitine-amended clay has enhanced BPA binding capacity, affinity and enthalpy. Our studies demonstrate how computational and experimental methods, combined, can characterize clay binding and sorption of toxic compounds, paving the way for future investigation of clays to reduce BPA and BPS exposure.

摘要

蒙脱石粘土有望成为减轻有毒化合物暴露的吸附剂。双酚A(BPA)和双酚S(BPS)以及邻苯二甲酸酯类,如邻苯二甲酸二丁酯(DBP)和邻苯二甲酸二(2-乙基己基)酯(DEHP),是普遍存在的环境污染物,与不良健康影响有关。在此,我们结合计算和实验方法,研究蒙脱石粘土吸附这些化合物的能力。分子动力学模拟预测,未改性的原生粘土对BPA和BPS的结合倾向高于对DBP和DEHP的结合倾向;肉碱改性粘土通过肉碱同时通过其季铵阳离子锚定在粘土上并与BPA和BPS形成氢键,提高了BPA和BPS的结合能力。实验等温分析证实,肉碱改性粘土具有增强的BPA结合容量、亲和力和焓。我们的研究表明,计算和实验方法相结合,如何能够表征粘土对有毒化合物的结合和吸附,为未来研究粘土以减少BPA和BPS暴露铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4c9/7591107/f454f09925a9/nihms-1628622-f0001.jpg

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