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新型稠合杂环-三唑类化合物的设计、合成及构效关系研究,此类化合物具有良好的活性和水溶性。

Design, synthesis, and structure-activity relationship studies of novel fused heterocycles-linked triazoles with good activity and water solubility.

机构信息

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Shanghai Institute for Biological Sciences, Chinese Academy of Sciences , Shanghai 201203, China.

出版信息

J Med Chem. 2014 May 8;57(9):3687-706. doi: 10.1021/jm4016284. Epub 2014 Mar 7.

Abstract

Triazoles with fused-heterocycle nuclei were designed and evaluated for their in vitro activity on the basis of the binding mode of albaconazole using molecular docking, along with SAR of antifungal triazoles. Tetrahydro-[1,2,4]triazolo[1,5-a]pyrazine and tetrahydro-thiazolo[5,4-c]pyridine nuclei were preferable to the other four fused-heterocycle nuclei investigated. Potent in vitro activity, broad spectrum and better water solubility were attained when triazoles containing nitrogen aromatic heterocycles were attached to these two nuclei. The most potent compounds 27aa and 45x, with low hERG inhibition and hepatocyte toxicity, both exhibited excellent activity against Candida, Cryptococcus, and Aspergillus spp., as well as selected fluconazole-resistant strains. A high water-soluble compound 58 (the disulfate salt of 45x) displayed unsatisfactory in vivo activity because of its poor PK profiles. Mice infected with C.alb. SC5314 and C.alb. 103 (fluconazole-resistant strain) and administered with 27aa displayed significantly improved survival rates. 27aa also showed favorable pharmacokinetic (PK) profiles.

摘要

基于 albaconazole 的结合模式,通过分子对接以及抗真菌三氮唑的 SAR 研究,设计并评估了具有稠合杂环核的三氮唑,以评估其体外活性。四氢-[1,2,4]三唑并[1,5-a]吡嗪和四氢-噻唑并[5,4-c]吡啶核比所研究的其他四个稠合杂环核更可取。当将含氮芳杂环的三唑连接到这两个核上时,可获得具有强大的体外活性、广谱性和更好的水溶性的化合物。具有低 hERG 抑制和肝细胞毒性的最有效化合物 27aa 和 45x,对念珠菌、隐球菌和曲霉菌属以及选定的氟康唑耐药株均表现出优异的活性。水溶性高的化合物 58(45x 的二硫酸盐盐)由于其不良的 PK 特征,显示出令人不满意的体内活性。用 27aa 处理感染 C.alb. SC5314 和 C.alb. 103(氟康唑耐药株)的小鼠,可显著提高存活率。27aa 还表现出良好的药代动力学(PK)特征。

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