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Trypanocidal Activity of Conformationally Restricted Pentamidine Congeners

机译:构象限制的喷他idine同源物的锥虫杀虫活性

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摘要

A series of conformationally restricted congeners of pentamidine in which the flexible pentyl bridge of pentamidine was replaced by trans-1,2-bismethylenecyclopropyl, phenyl, pyridinyl, piperazinyl, homopiperazinyl, and piperidinyl groups were synthesized. The compounds were evaluated for trypanocidal activity in vitro and in vivo against one drug-sensitive and three drug-resistant trypanosome isolates. The DNA binding affinity of the compounds was also studied using calf thymus DNA and poly(dA-dT). The nature of the linker influenced the DNA binding affinity as well as the trypanocidal activity of the compounds. trans-1,2-Bis(4-amidinophenoxymethylene)cyclopropane (1) was over 25-fold more potent than pentamidine against the drug-resistant isolate KETRI 243As-10-3, albeit with comparable DNA binding affinity. N,N'-Bis(4-amidinophenyl)homopiperazine (8) was the most potent trypanocide in vitro against all four trypanosome isolates studied, but N,N'-bis(4-amidinophenyl)piperazine (6) was the most effective agent in vivo against both drug-sensitive and drug-resistant trypanosomes.
机译:合成了一系列的戊烷构象受限同源物,其中戊烷idine的柔性戊基桥被反式1,2-双亚甲基环丙基,苯基,吡啶基,哌嗪基,高哌嗪基和哌啶基取代。评价该化合物针对一种药物敏感性和三种抗药性锥虫分离物的体外和体内锥虫杀伤活性。还使用小牛胸腺DNA和poly(dA-dT)研究了化合物的DNA结合亲和力。接头的性质影响了DNA的结合亲和力以及化合物的锥虫活性。反式1,2-双(4-ami基苯氧基亚甲基)环丙烷(1)对耐药分离株KETRI 243As-10-3的效力比喷他idine高25倍以上,尽管具有相当的DNA结合亲和力。 N,N'-双(4-ami基苯基)高哌嗪(8)是体外针对所有四种锥虫分离的最有效的锥虫病,但N,N'-双(4-ami基苯基)哌嗪(6)是最有效的药物体内对药物敏感性和耐药性锥虫都有作用。

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