a CNRS, DPM , Université Grenoble Alpes , Grenoble , France.
b Departamento de Antibióticos (DANTI) , Universidade Federal de Pernambuco (UFPE) , Recife , Brazil.
SAR QSAR Environ Res. 2019 Jun;30(6):383-401. doi: 10.1080/1062936X.2019.1607898.
Praziquantel (PZQ) is the first line drug for the treatment of human spp. worm infections. However, it suffers from low activity towards immature stages of the worm, and its prolonged use induces resistance/tolerance. During the last 40 years, 263 PZQ analogues have been synthesized and tested against spp. worms, but less than 10% of them showed significant activity. Here, we propose a rationalization of the chemical space of the PZQ derivatives by a ligand-based approach. First, we constructed an in-house database with all PZQ derivatives available in the literature. This analysis shows a high heterogeneity in the data. Fortunately, all studies include PZQ as a reference, permitting the classification of compounds into three classes according to their activities. Models involving ligand-based pharmacophore and logistic regression were performed. Five physicochemical parameters were identified as the best to explain the biological activity. In the end, we proposed new PZQ derivatives with modifications at positions 1 and 7, we analysed them with our models, and we observed that they can be more active than the previously synthesized derivatives. The main goal of this work was to conduct the most valuable meta-pharmacometrics/pharmacoinformatics analysis with all Praziquantel medicinal chemistry data available in the literature.
吡喹酮(PZQ)是治疗人类 spp. 蠕虫感染的一线药物。然而,它对蠕虫的未成熟阶段活性较低,并且其长期使用会诱导耐药性/耐受性。在过去的 40 年中,已经合成了 263 种 PZQ 类似物并对 spp. 蠕虫进行了测试,但只有不到 10%的类似物表现出显著的活性。在这里,我们通过基于配体的方法对 PZQ 衍生物的化学空间进行合理化。首先,我们用文献中所有可用的 PZQ 衍生物构建了一个内部数据库。该分析显示数据高度异质。幸运的是,所有研究都将 PZQ 作为参考,允许根据其活性将化合物分为三类。进行了基于配体的药效团和逻辑回归模型。确定了五个物理化学参数作为解释生物活性的最佳参数。最后,我们提出了在 1 位和 7 位进行修饰的新 PZQ 衍生物,用我们的模型对它们进行了分析,结果表明它们可能比以前合成的衍生物更具活性。这项工作的主要目标是对文献中可用的所有吡喹酮药物化学数据进行最有价值的元药效学/药物信息学分析。