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揭示抗菌剂对大鼠和小鼠急性经口毒性的种间相关性和敏感性因子分析:首个定量结构-毒性关系(QSTR)和定量时间-毒性关系(QTTR)建模报告

Unveiling the interspecies correlation and sensitivity factor analysis of rat and mouse acute oral toxicity of antimicrobial agents: first QSTR and QTTR Modeling report.

作者信息

Banjare Purusottam, Murmu Anjali, Matore Balaji Wamanrao, Singh Jagadish, Papa Ester, Roy Partha Pratim

机构信息

Laboratory of Drug Discovery and Ecotoxicology, Department of Pharmacy, Guru Ghasidas Vishwavidyalaya (A Central University), Koni, Bilaspur Chhattisgarh-495009, India.

QSAR Research Unit in Environmental Chemistry and Ecotoxicology, Department of Theoretical and Applied Sciences, University of Insubria, Via J.H. Dunant 3, 21100 Varese, Italy.

出版信息

Toxicol Res (Camb). 2024 Nov 16;13(6):tfae191. doi: 10.1093/toxres/tfae191. eCollection 2024 Dec.

Abstract

This study aims to identify toxic potential and environmental hazardousness of antimicrobials. In this regard, the available experimental toxicity data with rat and mouse acute oral toxicity have been gathered from ChemID Plus database ( = 202) and subjected to data curation. Upon the data curation 51 and 68 compounds were left for the rat and mouse respectively for the modeling. The quantitative structure toxicity relationship (QSTR) and interspecies correlation analysis by quantitative toxicity-toxicity relationship (QTTR) modeling was approached in this study. The models were developed from 2D descriptors under OECD guidelines by using multiple linear regressions (MLR) with genetic algorithm (GA) for feature selection as a chemometric tool. The developed models were robust (Q  = 0.600-0.679) and predictive enough (Q F  = 0.626-0.958, CCC  = 0.840-0.893). The leverage approach of applicability domain (ad) analysis assures the model's reliability. The antimicrobials without experimental toxicity values were classified as high, moderate and low toxic based on prediction and ad. The occurrence of the same classification from QSTR and QTTR models revealed the reliability of QTTR models.Finally, the applied typifies the sensitivity of chemicals toward each species. Overall, the first report will be helpful in the toxicity assessment of upcoming antimicrobials in rodents.

摘要

本研究旨在确定抗菌剂的潜在毒性和环境危害性。在此方面,已从ChemID Plus数据库(n = 202)收集了现有的大鼠和小鼠急性经口毒性实验毒性数据,并进行了数据整理。经过数据整理,分别为大鼠和小鼠留下了51种和68种化合物用于建模。本研究采用定量结构-毒性关系(QSTR)和通过定量毒性-毒性关系(QTTR)建模进行种间相关性分析。这些模型是根据经合组织指南,使用二维描述符,通过多元线性回归(MLR)和遗传算法(GA)进行特征选择作为化学计量工具开发的。所开发的模型稳健(Q² = 0.600 - 0.679)且具有足够的预测性(Q²F = 0.626 - 0.958,CCC = 0.840 - 0.893)。适用域(ad)分析的杠杆方法确保了模型的可靠性。没有实验毒性值的抗菌剂根据预测和适用域被分类为高毒、中毒和低毒。QSTR和QTTR模型的相同分类结果表明了QTTR模型的可靠性。最后,所应用的方法体现了化学物质对每个物种的敏感性。总体而言,这一首次报告将有助于对啮齿动物中即将出现的抗菌剂进行毒性评估。

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