Department of Toxicology and Pharmacology and Pharmaceutical Sciences Research Center, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.
Chem Biol Drug Des. 2011 Nov;78(5):844-52. doi: 10.1111/j.1747-0285.2011.01211.x. Epub 2011 Sep 15.
A series of novel thiazole incorporated (arylalkyl)azoles were synthesized and screened for their anticonvulsant properties using maximal electroshock and pentylenetetrazole models in mice. Among target compounds, 1-[(2-(4-chlorophenyl)thiazol-4-yl)methyl]-1H-imidazole (compound 4b), 1-[(2-phenylthiazol-4-yl)methyl]-1H-1,2,4-tria-zole (8a), and its 4-chlorophenyl analog (compound 8b) were able to display noticeable anticonvulsant activity in both pentylenetetrazole and maximal electroshock tests with percentage protection range of 33-100%. A computational study was carried out for prediction of pharmacokinetics properties and drug-likeness. The structure-activity relationship and in silico drug relevant properties (molecular weight, topological polar surface area, clog P, hydrogen bond donors, hydrogen bond acceptors, and log BB) confirmed that the compounds were within the range set by Lipinski's rule-of-five, and possessing favorable physicochemical properties for acting as CNS-drugs, making them potentially promising agents for epilepsy therapy.
一系列新型噻唑并(芳基)氮唑被合成,并通过最大电休克和戊四氮模型在小鼠中筛选其抗惊厥特性。在目标化合物中,1-[(2-(4-氯苯基)噻唑-4-基)甲基]-1H-咪唑(化合物 4b)、1-[(2-苯基噻唑-4-基)甲基]-1H-1,2,4-三唑(8a)及其 4-氯苯基类似物(化合物 8b)在戊四氮和最大电休克试验中均能表现出显著的抗惊厥活性,保护率为 33-100%。进行了一项计算研究,以预测药代动力学性质和药物相似性。结构-活性关系和计算机药物相关性质(分子量、拓扑极性表面积、clog P、氢键供体、氢键受体和 log BB)证实,这些化合物都在 Lipinski 五规则范围内,并且具有良好的理化性质,适合作为中枢神经系统药物,使它们有可能成为治疗癫痫的潜在药物。