Bell C A, Dykstra C C, Naiman N A, Cory M, Fairley T A, Tidwell R R
Department of Parasitology and Laboratory Practice, University of North Carolina at Chapel Hill 27599.
Antimicrob Agents Chemother. 1993 Dec;37(12):2668-73. doi: 10.1128/AAC.37.12.2668.
Nine dicationically substituted bis-benzimidazoles were examined for their in vitro activities against Giardia lamblia WB (ATCC 30957). The potential mechanisms of action of these compounds were evaluated by investigating the relationship among in vitro antigiardial activity and the affinity of the molecules for DNA and their ability to inhibit the activity of giardial topoisomerase II. Each compound demonstrated antigiardial activity, as measured by assessing the incorporation of [methyl-3H]thymidine by giardial trophozoites exposed to the test agents. Three compounds exhibited excellent in vitro antigiardial activities, with 50% inhibitory concentrations which compared very favorably with those of two currently used drugs, quinacrine HCl and metronidazole. Putative mechanisms of action for these compounds were suggested by the strong correlation observed among in vitro antigiardial activity and the affinity of the molecules for natural and synthetic DNA and their ability to inhibit the relaxation activity of giardial topoisomerase II. A strong correlation between the DNA binding affinity of these compounds and their inhibition of giardial topoisomerase II activity was also observed.
研究了9种二价取代的双苯并咪唑对贾第虫(ATCC 30957)的体外活性。通过研究体外抗贾第虫活性与分子对DNA的亲和力及其抑制贾第虫拓扑异构酶II活性的能力之间的关系,评估了这些化合物的潜在作用机制。通过评估暴露于测试剂的贾第虫滋养体对[甲基-3H]胸腺嘧啶的掺入量来测定,每种化合物均表现出抗贾第虫活性。三种化合物表现出优异的体外抗贾第虫活性,其50%抑制浓度与两种目前使用的药物盐酸奎纳克林和甲硝唑相比非常有利。体外抗贾第虫活性与分子对天然和合成DNA的亲和力及其抑制贾第虫拓扑异构酶II松弛活性的能力之间观察到的强相关性,提示了这些化合物的推定作用机制。还观察到这些化合物的DNA结合亲和力与其对贾第虫拓扑异构酶II活性的抑制之间存在强相关性。