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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Highly Active Anti-Pneumocystis carinii Compounds in a Library of Novel Piperazine-Linked Bisbenzamidines and Related Compounds.
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Highly Active Anti-Pneumocystis carinii Compounds in a Library of Novel Piperazine-Linked Bisbenzamidines and Related Compounds.

机译:新型哌嗪连接的双苯甲m和相关化合物库中的高活性抗卡氏肺孢子虫化合物。

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Trimethoprim-sulfamethoxazole and pentamidine isethionate have been used extensively for the prophylaxis and therapy of pneumonia caused by Pneumocystis jirovecii. Problems associated with toxicity and potential emerging resistance for both therapies necessitate the development of safe and effective analogs or new treatment strategies. In the present study, a library of 36 compounds was synthesized by using the pentamidine molecule as the parent compound modified by a 1,4-piperazinediyl moiety as the central linker to restrict conformation flexibility. The compounds were evaluated for anti-Pneumocystis carinii activity in a bioluminescent ATP-driven assay. Four of the compounds were highly active, with 50% inhibitory concentration (IC(50)) values of <0.01 渭g/ml; four had very marked activity (IC(50) < 0.10 渭g/ml); ten had marked activity (IC(50) < 1.0 渭g/ml); nine had moderate activity (IC(50) < 10 渭g/ml); one had slight activity (IC(50) = 34.1 渭g/ml); and the remaining eight did not demonstrate activity in this assay system. The high level of activity was specifically associated with an alkyl chain length of five to six carbons attached to one of the nitrogens of the bisamidinium groups. None of the highly active compounds and only one of the very marked compounds exhibited any toxicity when evaluated in three mammalian cell lines. The strategy of substitution of 1,4-piperazine-linked bisbenzamidines produced compounds with the highest level of activity observed in the ATP assay and holds great promise for the development of efficacious anti-P. carinii therapy.
机译:甲氧苄氨嘧啶磺胺甲基异恶唑和戊烷异羟乙磺酸盐已被广泛用于预防和治疗由卡氏肺孢子虫引起的肺炎。与这两种疗法的毒性和潜在的新出现的耐药性相关的问题需要开发安全有效的类似物或新的治疗策略。在本研究中,通过使用喷他idine啶分子作为母体化合物,合成了36种化合物的文库,这些化合物被1,4-哌嗪二基部分作为中心接头修饰,以限制构象柔性。在生物发光ATP驱动的测定法中评估了这些化合物的抗卡氏肺孢子虫活性。其中四种化合物具有高活性,抑制浓度(IC(50))的50%值<0.01μg/ ml;四个具有非常显着的活性(IC(50)<0.10μg/ ml);十个具有明显的活性(IC(50)<1.0μg/ ml); 9个具有中等活性(IC(50)<10μg/ ml);一个具有轻微的活性(IC(50)= 34.1μg/ ml);其余八个未在该测定系统中显示出活性。高水平的活性与附在双bis鎓基团的一个氮原子上的五到六个碳的烷基链长有关。当在三种哺乳动物细胞系中评估时,没有一种高活性化合物,只有一种非常明显的化合物显示出任何毒性。 1,4-哌嗪连接的双苯甲m的取代策略可生产出在ATP分析中具有最高活性水平的化合物,并为开发有效的抗P药物前景广阔。卡里尼疗法。

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