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通过分子对接模拟评估了双酚A的木质素衍生替代物的雌激素活性。

Estrogenic activity of lignin-derivable alternatives to bisphenol A assessed molecular docking simulations.

作者信息

Amitrano Alice, Mahajan Jignesh S, Korley LaShanda T J, Epps Thomas H

机构信息

Department of Chemical and Biomolecular Engineering, University of Delaware Newark Delaware 19716 USA

Department of Materials Science and Engineering, University of Delaware Newark Delaware 19716 USA.

出版信息

RSC Adv. 2021 Jun 23;11(36):22149-22158. doi: 10.1039/d1ra02170b. eCollection 2021 Jun 21.

Abstract

Lignin-derivable bisphenols are potential alternatives to bisphenol A (BPA), a suspected endocrine disruptor; however, a greater understanding of structure-activity relationships (SARs) associated with such lignin-derivable building blocks is necessary to move replacement efforts forward. This study focuses on the prediction of bisphenol estrogenic activity (EA) to inform the design of potentially safer BPA alternatives. To achieve this goal, the binding affinities to estrogen receptor alpha (ERα) of lignin-derivable bisphenols were calculated molecular docking simulations and correlated to median effective concentration (EC) values using an empirical correlation curve created from known EC values and binding affinities of commercial (bis)phenols. Based on the correlation curve, lignin-derivable bisphenols with binding affinities weaker than ∼-6.0 kcal mol were expected to exhibit no EA, and further analysis suggested that having two methoxy groups on an aromatic ring of the bio-derivable bisphenol was largely responsible for the reduction in binding to ERα. Such dimethoxy aromatics are readily sourced from the depolymerization of hardwood biomass. Additionally, bulkier substituents on the bridging carbon of lignin-bisphenols, like diethyl or dimethoxy, were shown to weaken binding to ERα. And, as the bio-derivable aromatics maintain major structural similarities to BPA, the resultant polymeric materials should possess comparable/equivalent thermal (, glass transition temperatures, thermal decomposition temperatures) and mechanical (, tensile strength, modulus) properties to those of polymers derived from BPA. Hence, the SARs established in this work can facilitate the development of sustainable polymers that maintain the performance of existing BPA-based materials while simultaneously reducing estrogenic potential.

摘要

木质素衍生的双酚是双酚A(BPA)的潜在替代品,双酚A被怀疑是一种内分泌干扰物;然而,要推动替代工作向前发展,有必要更深入地了解与这种木质素衍生结构单元相关的构效关系(SARs)。本研究聚焦于双酚雌激素活性(EA)的预测,以为潜在更安全的双酚A替代品的设计提供信息。为实现这一目标,通过分子对接模拟计算了木质素衍生双酚与雌激素受体α(ERα)的结合亲和力,并使用由已知商业(双)酚的EC值和结合亲和力创建的经验相关曲线,将其与半数有效浓度(EC)值相关联。基于该相关曲线,预计结合亲和力弱于约-6.0 kcal/mol的木质素衍生双酚不会表现出雌激素活性,进一步分析表明,生物衍生双酚的芳环上有两个甲氧基在很大程度上导致了与ERα结合的减少。这种二甲氧基芳烃很容易从硬木生物质的解聚中获得。此外,木质素双酚桥连碳上更大的取代基,如二乙基或二甲氧基,被证明会削弱与ERα的结合。而且,由于生物衍生芳烃与双酚A保持主要结构相似性,所得聚合物材料应具有与双酚A衍生聚合物相当/等同的热性能(如玻璃化转变温度、热分解温度)和机械性能(如拉伸强度、模量)。因此,本工作中建立的构效关系有助于开发可持续聚合物,这些聚合物在保持现有双酚A基材料性能的同时,还能降低雌激素潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dec/9034231/3b7844e38546/d1ra02170b-f1.jpg

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