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用于数据高效皮肤致敏定量构效关系模型的低成本量子力学描述符。

Low-cost quantum mechanical descriptors for data efficient skin sensitization QSAR models.

作者信息

Guan Davy, Lui Raymond, Mattthews Slade T

机构信息

Computational Pharmacology & Toxicology Laboratory, Discipline of Pharmacology, Sydney Pharmacy School, Faculty of Medicine and Health, The University of Sydney, NSW 2006, Australia.

出版信息

Curr Res Toxicol. 2024 Jun 18;7:100183. doi: 10.1016/j.crtox.2024.100183. eCollection 2024.

Abstract

Quantitative Structure Activity Relationship modelling methodologies need to incorporate relevant mechanistic information to have high predictive performance and validity. Electrophilic reactivity is a common mechanistic feature of skin sensitization endpoints which could be concisely characterized with electronic descriptors which is key to enabling the modelling of small datasets in this domain. However, quantum mechanical methodologies have previously featured high computational costs which would exclude the use of large datasets. Consequently, we investigate the use of electronic descriptors calculated using the Hartree Fock with 3 corrections (Hf-3c) method, a low-cost methodology that has higher chemical accuracy than previous semiempirical methodologies for modelling skin sensitization assay outcomes. We also model the Ames assay as a surrogate for determining skin sensitization outcomes. The quantum chemical descriptors calculated using the Hf-3c method with conductor-like polarizable continuum model (CPCM) implicit solvation found improved QSAR model performance for the Ames ( = 6049, 0.770 AUC), KeratinoSens ( = 164, 0.763 AUC), and Direct Peptide Reactivity Assay ( = 122, 0.750 AUC) datasets, with their combination producing high predictive performance for unseen Local Lymph Node Assay ( = 86, 0.789 AUC) and Human Repeated Insult Patch Test ( = 86, 0.791 AUC) assay toxicant outcomes.

摘要

定量构效关系建模方法需要纳入相关的机理信息,以具备高预测性能和有效性。亲电反应性是皮肤致敏终点的一个常见机理特征,可以用电子描述符进行简洁表征,这对于在此领域对小数据集进行建模至关重要。然而,量子力学方法此前具有较高的计算成本,这将排除对大型数据集的使用。因此,我们研究了使用Hartree Fock带3种校正(Hf - 3c)方法计算的电子描述符,这是一种低成本方法,比之前用于模拟皮肤致敏试验结果的半经验方法具有更高的化学精度。我们还将Ames试验建模为确定皮肤致敏结果的替代方法。使用带导体类极化连续介质模型(CPCM)隐式溶剂化的Hf - 3c方法计算的量子化学描述符,对于Ames(n = 6049,AUC = 0.770)、KeratinoSens(n = 164,AUC = 0.763)和直接肽反应性试验(n = 122,AUC = 0.750)数据集,发现其QSAR模型性能有所提高,将它们组合起来对未见过的局部淋巴结试验(n = 86,AUC = 0.789)和人体重复刺激斑贴试验(n = 86,AUC = 0.791)的毒物结果产生了高预测性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3a3/11253267/0bc96f581c8c/ga1.jpg

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