亲脂性
化学
药物发现
溶解度
生物利用度
化学空间
组合化学
生化工程
分子描述符
李宾斯基五定律
数量结构-活动关系
生物系统
计算化学
有机化学
立体化学
药理学
医学
生物化学
生物信息学
生物
工程类
基因
作者
Diego García Jiménez,Maura Vallaro,Matteo Rossi Sebastiano,Giulia Apprato,Giulia D’Agostini,Paolo Rossetti,Giuseppe Ermondi,Giulia Caron
标识
DOI:10.1021/acs.jmedchem.3c00823
摘要
New chemical modalities in drug discovery include molecules belonging to the bRo5 chemical space. Because of their complex and flexible structure, bRo5 compounds often suffer from a poor solubility/permeability profile. Chameleonicity describes the capacity of a molecule to adapt to the environment through conformational changes; the design of molecular chameleons is a medicinal chemistry strategy simultaneously optimizing solubility and permeability. A default method to quantify chameleonicity in early drug discovery is still missing. Here we introduce Chamelogk, an automated, fast, and cheap chromatographic descriptor of chameleonicity. Moreover, we report measurements for 55 Ro5 and bRo5 compounds and validate our method with literature data. Then, selected case studies (macrocycles, nonmacrocyclic compounds, and PROTACs) are used to illustrate the application of Chamelogk in combination with lipophilicity (BRlogD) and polarity (Δ log kwIAM) descriptors. Overall, we show how Chamelogk deserves being included in property-based drug discovery strategies to design oral bioavailable bRo5 compounds.
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