首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Enhanced Biodegradation of Phthalic Acid Esters’ Derivatives by Plasticizer-Degrading Bacteria (Burkholderia cepacia Archaeoglobus fulgidus Pseudomonas aeruginosa) Using a Correction 3D-QSAR Model
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Enhanced Biodegradation of Phthalic Acid Esters’ Derivatives by Plasticizer-Degrading Bacteria (Burkholderia cepacia Archaeoglobus fulgidus Pseudomonas aeruginosa) Using a Correction 3D-QSAR Model

机译:使用校正3D-QSAR模型增强了增塑剂降解细菌(BurkowneriaCepaciaArchaeoglobus Fulgidus假单胞菌Aeruginosa)的邻苯二甲酸酯衍生物的生物降解

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摘要

A phthalic acid ester’s (PAEs) comprehensive biodegradability three-dimensional structure-activity relationship (3D-QSAR) model was established, to design environmentally friendly PAE derivatives, which could be simultaneously degraded by plasticizer-degrading bacteria, such as , , and . Only three derivatives of diethyl phthalate (DEP (DEP-27, DEP-28 and DEP-29)) were suited for their functionality and environmental friendliness, which had an improved stability in the environment and improved the characteristics (bio-toxicity, bioaccumulation, persistence, and long-range migration) of the persistent organic pollutants (POPs). The simulation inference of the microbial degradation path before and after DEP modification and the calculation of the reaction energy barrier exhibited the energy barrier for degradation being reduced after DEP modification and was consistent with the increased ratio of comprehensive biodegradability. This confirmed the effectiveness of the comparative molecular similarity index analysis (CoMSIA) model of the PAE’s comprehensive biodegradability. In addition, a molecular dynamics simulation revealed that the binding of the DEP-29 derivative with the three plasticizer-degradation enzymes increased significantly. DEP-29 could be used as a methyl phthalate derivative that synergistically degrades with microplastics, providing directional selection and theoretical designing for plasticizer replacement.
机译:建立了邻苯二甲酸酯(PAES)综合生物降解性三维结构 - 活性关系(3D-QSAR)模型,以设计环保的PAE衍生物,其可以通过增塑剂降解细菌同时降解,例如和。只有三种邻苯二甲酸二乙酯(DEP-27,DEP-28和DEP-29)的三种衍生物适用于它们的功能和环境友好性,其在环境中具有改善的稳定性并改善了特征(生物毒性,生物累积,持久性有机污染物(POPS)的持久性和远程迁移。 DEM改性和反应能屏障的计算前后微生物降解路径的模拟推断表现出在DEM改性后降解的能量屏障,并与综合生物降解性的比例一致。这证实了PAE综合生物降解性的比较分子相似指数分析(COMSIA)模型的有效性。此外,分子动力学模拟显示DEP-29衍生物与三种增塑剂降解酶的结合显着增加。 DEP-29可用作邻苯二甲酸甲酯衍生物,其用微薄塑料协同降解,提供定向选择和用于增塑剂的理论设计。

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