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一个关于内分泌干扰化学物质及其生物系统水平干扰的精选知识库。

A curated knowledgebase on endocrine disrupting chemicals and their biological systems-level perturbations.

机构信息

The Institute of Mathematical Sciences (IMSc), Homi Bhabha National Institute (HBNI), Chennai 600113, India.

The Institute of Mathematical Sciences (IMSc), Homi Bhabha National Institute (HBNI), Chennai 600113, India.

出版信息

Sci Total Environ. 2019 Nov 20;692:281-296. doi: 10.1016/j.scitotenv.2019.07.225. Epub 2019 Jul 16.

Abstract

Human well-being can be affected by exposure to several chemicals in the environment. One such group is endocrine disrupting chemicals (EDCs) that can perturb the hormonal homeostasis leading to adverse health effects. In this work, we have developed a detailed workflow to identify EDCs with supporting evidence of endocrine disruption in published experiments in humans or rodents. Thereafter, this workflow was used to manually evaluate more than 16,000 published research articles and identify 686 potential EDCs with published evidence in humans or rodents. Importantly, we have compiled the observed adverse effects or endocrine-specific perturbations along with the dosage information for the potential EDCs from their supporting published experiments. Subsequently, the potential EDCs were classified based on the type of supporting evidence, their environmental source and their chemical properties. Additional compiled information for potential EDCs include their chemical structure, physicochemical properties, predicted ADMET properties and target genes. In order to enable future research based on this compiled information on potential EDCs, we have built an online knowledgebase, Database of Endocrine Disrupting Chemicals and their Toxicity profiles (DEDuCT), accessible at: https://cb.imsc.res.in/deduct/. After building this comprehensive resource, we have performed a network-centric analysis of the chemical space and the associated biological space of target genes of EDCs. Specifically, we have constructed two networks of EDCs using our resource based on similarity of chemical structures or target genes. Ensuing analysis revealed a lack of correlation between chemical structure and target genes of EDCs. Though our detailed results highlight potential challenges in developing predictive models for EDCs, the compiled information in our resource will undoubtedly enable future research in the field, especially, those focussed towards mechanistic understanding of the systems-level perturbations caused by EDCs.

摘要

人类福祉可能会受到环境中多种化学物质的影响。其中一组是内分泌干扰化学物质(EDCs),它们可以破坏激素平衡,导致不良健康影响。在这项工作中,我们开发了一个详细的工作流程,以识别具有内分泌干扰证据的 EDCs,这些证据来自已发表的人类或啮齿动物实验。此后,该工作流程用于手动评估超过 16000 篇已发表的研究文章,并确定了 686 种具有人类或啮齿动物发表证据的潜在 EDCs。重要的是,我们从支持发表的实验中,整理了潜在 EDCs 的观察到的不良影响或内分泌特异性扰动,以及剂量信息。随后,根据支持证据的类型、环境来源和化学特性对潜在 EDCs 进行分类。潜在 EDCs 的其他相关信息包括其化学结构、物理化学特性、预测的 ADMET 特性和靶基因。为了能够基于此潜在 EDCs 编译信息进行未来的研究,我们构建了一个在线知识库,即内分泌干扰化学物质及其毒性特征数据库(DEDuCT),可在以下网址访问:https://cb.imsc.res.in/deduct/。在构建此综合资源之后,我们对 EDCs 的化学空间和靶基因的相关生物空间进行了网络中心分析。具体来说,我们使用我们的资源基于化学结构或靶基因的相似性构建了两个 EDCs 网络。随后的分析表明,EDCs 的化学结构和靶基因之间没有相关性。尽管我们的详细结果突出了开发 EDCs 预测模型的潜在挑战,但我们资源中的编译信息无疑将能够为该领域的未来研究提供支持,特别是那些专注于理解 EDCs 引起的系统水平扰动的机制的研究。

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