Ezabadi Iraj Rahavi, Camoutsis Charalabos, Zoumpoulakis Panagiotis, Geronikaki Athina, Soković Marina, Glamocilija Jasmina, Cirić Ana
School of Health Sciences, Department of Pharmacy, Laboratory of Pharmaceutical Chemistry, University of Patras, Patras, Greece.
Bioorg Med Chem. 2008 Feb 1;16(3):1150-61. doi: 10.1016/j.bmc.2007.10.082. Epub 2007 Nov 28.
A series of 10 new 5-[2-(substituted sulfamoyl)-4,5-dimethoxy-benzyl]-4aryl-s-triazole-3-thiones were synthesized and evaluated for in vitro antifungal and antibacterial activity. All compounds tested showed significant antifungal activity against all the micromycetes, compared to the commercial fungicide bifonazole. Differences in their activity depend on the substitution of different reactive groups. More specifically, best antifungal activity among synthetic analogues was shown with N-dimethylsulfamoyl group. All the compounds tested against bacteria showed the same activity as the commercial agent streptomycin, except for Enterobacter cloacce and Salmonella species. Chloramphenicol showed lower bactericidal effect than the synthetic compounds. Furthermore, it is apparent that different compounds reacted in different ways against bacteria. Gram (-) bacteria seem to be more sensitive to these compounds than Gram (+) species. An effort was made to correlate the above-mentioned differences in activity with lipophilicity studies. Furthermore, molecular modeling was used to obtain the main conformational features of this class of molecules for future structure-activity relationship studies.
合成了一系列10种新型的5-[2-(取代氨磺酰基)-4,5-二甲氧基-苄基]-4-芳基-s-三唑-3-硫酮,并对其体外抗真菌和抗菌活性进行了评估。与市售杀真菌剂联苯苄唑相比,所有测试化合物对所有微真菌均表现出显著的抗真菌活性。它们的活性差异取决于不同反应基团的取代情况。更具体地说,合成类似物中以N-二甲基氨磺酰基表现出最佳的抗真菌活性。除阴沟肠杆菌和沙门氏菌外,所有测试的化合物对细菌的活性与市售药物链霉素相同。氯霉素的杀菌效果低于合成化合物。此外,可以明显看出不同化合物对细菌的反应方式不同。革兰氏(-)菌似乎比革兰氏(+)菌对这些化合物更敏感。已努力将上述活性差异与亲脂性研究相关联。此外,分子建模用于获得这类分子的主要构象特征,以供未来进行构效关系研究。