Kandpal M, Tekwani B L, Chauhan P M, Bhaduri A P
Division of Biochemistry, Central Drug Research Institute, Lucknow, India.
Life Sci. 1996;59(7):PL75-80. doi: 10.1016/0024-3205(96)00341-4.
Diamidines are known to possess potent antiprotozoal activity due to their property of binding with DNA minor groove. Pentamidine or 1,5-bis-(4'-amidinophenoxy)pentane, is the most known aromatic diamidine and is used to treat cases of antimony resistant leishmaniasis. Yet, it suffers from limited clinical application due to its adverse and toxic side effects. A set of four structural analogs of pentamidine along with the known antileishmanial diamidines viz., pentamidine, berenil and dibromopropamidine, were tested for their effect on growth of Leishmania donovani promastigotes in vitro using 3H-thymidine incorporation as the growth parameter. In view of structural similarity between amidino moiety of diamidines and guanidino group of L-arginine and also the previous report from this laboratory regarding presence of a novel arginine transporter in Leishmania donovani promastigotes, a parallel study was also conducted with the analogs and standard diamidines for their inhibitory effect on leishmanial arginine transport function. Bisbenzyl pentamidine and biscyclopropyl pentamidine were identified as considerably more potent inhibitors of growth and arginine transport function of leishmania promastigotes in vitro than the parent drug, pentamidine. A linear correlation was established between inhibition of parasite growth and arginine transport with regard to standard diamidines as well as novel analogs. Inhibition of arginine transport by dibromopropamidine and Pentamidine was competitive. The diamidines possibly gain entry into leishmania cells through arginine transporter.
双脒因因其与DNA小沟结合的特性而具有强大的抗原生动物活性。喷他脒或1,5-双-(4'-脒基苯氧基)戊烷是最知名的芳香族双脒因,用于治疗抗锑利什曼病病例。然而,由于其不良和毒性副作用,其临床应用受到限制。使用3H-胸腺嘧啶核苷掺入作为生长参数,测试了一组喷他脒的四种结构类似物以及已知的抗利什曼双脒因,即喷他脒、贝尼尔和二溴丙脒对杜氏利什曼原虫前鞭毛体体外生长的影响。鉴于双脒因的脒基部分与L-精氨酸的胍基之间的结构相似性,以及本实验室先前关于杜氏利什曼原虫前鞭毛体中存在新型精氨酸转运体的报道,还对这些类似物和标准双脒因对利什曼原虫精氨酸转运功能的抑制作用进行了平行研究。双苄基喷他脒和双环丙基喷他脒被确定为比母体药物喷他脒在体外对利什曼原虫前鞭毛体的生长和精氨酸转运功能更有效的抑制剂。就标准双脒因和新型类似物而言,在寄生虫生长抑制和精氨酸转运之间建立了线性相关性。二溴丙脒和喷他脒对精氨酸转运的抑制是竞争性的。双脒因可能通过精氨酸转运体进入利什曼原虫细胞。