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首页> 外文期刊>MedChemComm >Development of highly active anti-Pneumocystis bisbenzamidines: insight into the influence of selected substituents on the in vitro activity
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Development of highly active anti-Pneumocystis bisbenzamidines: insight into the influence of selected substituents on the in vitro activity

机译:高活性抗Pneumocystis双苯虫胺的开发:洞察所选取代基对体外活性的影响

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摘要

Here we describe the potency of 21 pentamidine analogues against the fungal pathogen, Pneumocystis carinii, in an ATP bioluminescent assay with toxicity profiles in 2 mammalian cell lines. Reduction of two 5-methyl-1,2,4-oxadiazole rings was applied to the synthesis of acid-labile bisamidines. Anti-Pneumocystis activity is discussed in the context of 3 groups of compounds depending on the main structural changes of the pentamidine lead structure. The groups include: 1) 1,4-bis(methylene)piperazine derivatives 1-5; 2) alkanediamide derivatives 6-10; 3) alkane-derived bisbenzamidines 11-21. IC_(50) values of 18 compounds were lower than the IC_(50) of pentamidine. Four bisamidines were active at nanogram concentrations. Introduction of sulfur atoms in the alkane bridge, replacement of the amidino groups with imidazoline rings, or attachment of nitro or amino groups to the benzene rings is responsible for remarkable activity of the new leading structures. The vast majority of compounds, including four highly active ones, can be classified as mild or nontoxic to host cells. These compounds show promise as candidates for new anti-Pneumocystis agents.
机译:在这里,我们描述了21例五脒类似物对真菌病原体的效力,肺细胞肠道肺炎,在哺乳动物细胞系中具有毒性曲线的ATP生物发光测定。将两种5-甲基-1,2,4-氧代唑环的减少应用于酸不稳定的海胺胺的合成。在3组化合物的上下文中讨论了抗肺泡活性,这取决于芬太丁铅结构的主要结构变化。该组包括:1)1,4-双(亚甲基)哌嗪衍生物1-5; 2)链烷基化衍生物6-10; 3)烷烃衍生的双苯虫胺11-21。 IC_(50)的18个化合物的值低于芬太丁的IC_(50)。四个海胺氨酸在纳米级浓度下活性。在烷烃桥中引入硫原子,用咪唑啉环的氨基胺替换,或硝基或氨基的附着在苯环上,是新领先结构的显着活性。绝大多数化合物,包括四个高活性的化合物,可以被分类为宿主细胞的温和或无毒。这些化合物显示为新的抗肺细胞剂的候选者。

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  • 来源
    《MedChemComm》 |2017年第10期|共9页
  • 作者单位

    Department of Organic Chemistry Faculty of Pharmacy Medical University of Warsaw Banacha 1 Street 02-097 Warsaw Poland.;

    Department of Organic Chemistry Faculty of Pharmacy Medical University of Warsaw Banacha 1 Street 02-097 Warsaw Poland.;

    Department of Organic Chemistry Faculty of Pharmacy Medical University of Warsaw Banacha 1 Street 02-097 Warsaw Poland.;

    Department of Organic Chemistry Faculty of Pharmacy Medical University of Warsaw Banacha 1 Street 02-097 Warsaw Poland.;

    Division of Infectious Diseases Department of Internal Medicine University of Cincinnati College of Medicine 231 Albert Sabin Way Cincinnati OH 45267 USA.;

    Division of Infectious Diseases Department of Internal Medicine University of Cincinnati College of Medicine 231 Albert Sabin Way Cincinnati OH 45267 USA.;

    Division of Infectious Diseases Department of Internal Medicine University of Cincinnati College of Medicine 231 Albert Sabin Way Cincinnati OH 45267 USA.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

    Development of highly active; anti-Pneumocystis bisbenzamidines:; selected substituents on the in vitro activity;

    机译:高活性的发展;抗Pneumocystis双苯虫胺:;在体外活性的选定取代基;

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