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医药化学与电化学的交汇:在定量构效关系(QSAR/QSPR)中,氧化还原电位作为终点或分子描述符的作用。

Medicinal Chemistry Meets Electrochemistry: Redox Potential in the Role of Endpoint or Molecular Descriptor in QSAR/QSPR.

机构信息

Department of Analytical Chemistry, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

Mini Rev Med Chem. 2020;20(14):1341-1356. doi: 10.2174/1389557520666200204121806.

Abstract

Many biochemical reactions are based on redox reactions. Therefore, the redox potential of a chemical compound may be related to its therapeutic or physiological effects. The study of redox properties of compounds is a domain of electrochemistry. The subject of this review is the relationship between electrochemistry and medicinal chemistry, with a focus on quantifying these relationships. A summary of the relevant achievements in the correlation between redox potential and structure, therapeutic activity, resp., is presented. The first part of the review examines the applicability of QSPR for the prediction of redox properties of medically important compounds. The second part brings the exhaustive review of publications using redox potential as a molecular descriptor in QSAR of biological activity. Despite the complexity of medicinal chemistry and biological reactions, it is possible to employ redox potential in QSAR/QSPR. In many cases, this electrochemical parameter plays an essential but rarely absolute role.

摘要

许多生化反应都是基于氧化还原反应。因此,化学化合物的氧化还原电位可能与其治疗或生理效应有关。化合物氧化还原性质的研究是电化学的一个领域。本次综述的主题是电化学与药物化学之间的关系,重点是量化这些关系。本文总结了氧化还原电位与结构、治疗活性等之间相关性的相关研究成果。综述的第一部分考察了定量构效关系(QSAR)在预测医学上重要化合物氧化还原性质中的适用性。第二部分综述了将氧化还原电位用作生物活性 QSAR 中分子描述符的出版物。尽管药物化学和生物反应很复杂,但仍有可能在 QSAR/QSPR 中使用氧化还原电位。在许多情况下,这个电化学参数起着重要但很少是绝对的作用。

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