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基于片段的药物设计和羧酸等价物的多样性导向合成。

Fragment based drug design and diversity-oriented synthesis of carboxylic acid isosteres.

机构信息

Department of Pharmaceutical Sciences, University of Perugia, via del Liceo 1, 06123 Perugia, Italy.

TES Pharma, via P. Togliatti 22bis, 06073 Terrioli, Corciano, Italy.

出版信息

Bioorg Med Chem. 2020 Nov 15;28(22):115731. doi: 10.1016/j.bmc.2020.115731. Epub 2020 Aug 28.

Abstract

The medicinal chemist toolbox is plenty of (bio)isosteres when looking for a carboxylic acid replacement. However, systematic assessment of acid surrogates is often time consuming and expensive, while prediction of both physicochemical properties (logP and logD) as well as acidity would be desirable at early discovery stages for a better analog design. Herein in this work, to enable decision making on a project, we have synthesized by employing a Diversity-Oriented Synthetic (DOS) methodology, a small library of molecular fragments endowed with acidic properties. By combining in-silico and experimental methodologies these compounds were chemically characterized and, particularly, with the aim to know their physicochemical properties, the aqueous ionization constants (pKa), partition coefficients logD and logP of each fragment was firstly estimated by using molecular modeling studies and then validated by experimental determinations. A face to face comparison between data and the corresponding carboxylic acid might help medicinal chemists in finding the best replacement to be used. Finally, in the framework of Fragment Based Drug Design (FBDD) the small library of fragments obtained with our approach showed good versatility both in synthetic and physico-chemical properties.

摘要

当寻找羧酸的替代品时,药物化学家的工具包中有很多(生物)等排体。然而,系统地评估酸替代物通常既耗时又昂贵,而在早期发现阶段,预测物理化学性质(logP 和 logD)以及酸度对于更好的类似物设计是理想的。在这项工作中,为了在项目决策中提供帮助,我们通过采用多样性导向合成(DOS)方法,合成了具有酸性的小分子片段库。通过将计算机模拟和实验方法相结合,对这些化合物进行了化学表征,特别是为了了解它们的物理化学性质,我们首先通过分子建模研究估算了每个片段的水相离解常数(pKa)、分配系数 logD 和 logP,然后通过实验测定进行验证。将数据与相应的羧酸进行面对面比较,可以帮助药物化学家找到最佳替代品。最后,在基于片段的药物设计(FBDD)框架中,我们通过这种方法获得的小分子片段库在合成和物理化学性质方面具有很好的通用性。

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