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Computational molecular modeling for evaluating the toxicity of environmental chemicals: prioritizing bioassay requirements.

机译:用于评估环境化学物质毒性的计算分子模型:优先考虑生物测定要求。

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摘要

BACKGROUND: The human health risk from exposure to environmental chemicals often must be evaluated when relevant elements of the preferred data are unavailable. Therefore, strategies are needed that can predict this information and prioritize the outstanding data requirements for the risk evaluation. Many modes of molecular toxicity require the chemical or one of its biotransformation products to interact with specific biologic macromolecules (i.e., proteins and DNA). Molecular modeling approaches may be adapted to study the interactions of environmental chemicals with biomolecular targets. OBJECTIVE: In this commentary we provide an overview of the challenges that arise from applying molecular modeling tools developed and commonly used for pharmaceutical discovery to the problem of predicting the potential toxicities of environmental chemicals. DISCUSSION: The use of molecular modeling tools to predict the unintended health and environmental consequences of environmental chemicals differs strategically from the use of the same tools in the pharmaceutical discovery process in terms of the goals and potential applications. It also requires consideration of the greater diversity of chemical space and binding affinity domains than is covered by pharmaceuticals. CONCLUSION: Molecular modeling methods offer one of several complementary approaches to evaluate the risk to human health and the environment as a result of exposure to environmental chemicals. These tools can streamline the hazard assessment process by simulating possible modes of action and providing virtual screening tools that can help prioritize bioassay requirements. Tailoring these strategies to the particular challenges presented by environmental chemical interactions make them even more effective.
机译:背景:当无法获得首选数据的相关要素时,通常必须评估由于接触环境化学物质而造成的人类健康风险。因此,需要可以预测此信息并优先进行风险评估的数据需求优先级的策略。分子毒性的许多模式都需要化学物质或其生物转化产物之一来与特定的生物大分子(即蛋白质和DNA)相互作用。分子建模方法可能适用于研究环境化学品与生物分子靶标的相互作用。目的:在这篇评论中,我们概述了将开发和普遍用于药物发现的分子建模工具应用于预测环境化学品潜在毒性的问题所带来的挑战。讨论:就目标和潜在应用而言,使用分子建模工具来预测环境化学品的意外健康和环境后果在策略上不同于在药物发现过程中使用相同的工具。还需要考虑化学空间和结合亲和力域的多样性比药物涵盖的更大。结论:分子建模方法提供了几种补充方法之一,以评估由于暴露于环境化学物质而对人类健康和环境造成的风险。这些工具可通过模拟可能的作用方式并提供虚拟筛选工具来简化生物评估要求的优先级,从而简化危害评估流程。针对环境化学相互作用所带来的特殊挑战量身定制这些策略,使其更加有效。

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