首页> 外文期刊>Toxicology Research >Development of predictive QSAR models for Vibrio fischeri toxicity of ionic liquids and their true external and experimental validation tests
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Development of predictive QSAR models for Vibrio fischeri toxicity of ionic liquids and their true external and experimental validation tests

机译:离子液体对费氏弧菌毒性的预测QSAR模型的开发及其真实的外部和实验验证测试

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摘要

Despite possessing an interesting chemical nature and tuneable physicochemical properties, ionic liquids (ILs) must have their ecotoxicity tested in order to be commercialized. The water solubility of ILs allows their easy access to the aquatic compartment of the ecosystem creating a potential hazard to aquatic organisms. Hence, it is relevant to design ionic liquids with lower toxicity while keeping the desired properties of interest. Considering the possibility of an enormous number of combinations of different cations and anions, a rational guidance for the structural design of ionic liquids is essential in order to prioritize the synthesis as well as testing of selected molecules only. Predictive in silico models, such as quantitative structure-activity relationship (QSAR) models, can play a pivotal role in exploring the important chemical attributes contributing to the response activity. These models may then lead to the design of novel ionic liquids. The present study aims at developing predictive QSAR models for the ecotoxicity of ionic liquids using the bacteria Vibrio fischeri as an indicator response species. Instead of a single model, here we have used multiple models to capture more complete structural information of ionic liquids for toxicity towards Vibrio fischeri. The derived chemical attributes have been implemented in designing new analogues, some of which have been synthesized and had their ecotoxicity tested for the same model organism. The predictive QSAR models reported here can be used for ecotoxicity prediction of new IL chemicals and for data-gap filling. Moreover, the synthesized low-toxic ILs could be considered for evaluation as well as for application in suitable processes serving the purpose of industry and academia.
机译:尽管具有有趣的化学性质和可调节的物理化学性质,但离子液体(IL)必须经过测试其生态毒性才能商品化。 IL的水溶性使其易于进入生态系统的水生区室,对水生生物造成潜在危害。因此,设计具有较低毒性同时保持所需的所需特性的离子液体是重要的。考虑到大量不同阳离子和阴离子的组合的可能性,对离子液体的结构设计进行合理指导是必不可少的,以便优先考虑合成以及仅测试所选分子。预测性计算机模拟模型,例如定量结构-活性关系(QSAR)模型,在探索有助于响应活性的重要化学属性中可以发挥关键作用。这些模型可能会导致新型离子液体的设计。本研究旨在开发利用细菌费氏弧菌作为指示反应物种的离子液体生态毒性的预测QSAR模型。代替单个模型,这里我们使用多个模型来捕获离子液体对费氏弧菌的毒性的更完整的结构信息。在设计新的类似物时已实现了衍生的化学属性,其中一些已被合成并已对同一模型生物进行了生态毒性测试。此处报道的QSAR预测模型可用于预测新的IL化学品的生态毒性和填补数据空白。此外,合成的低毒ILs可以考虑用于评估以及用于工业和学术界的合适过程中。

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