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N-取代对苯醌亚胺的体外杀锥虫活性:采用汉斯方法评估生化构效关系

The in vitro trypanocidal activity of N-substituted p-benzoquinone imines: assessment of biochemical structure-activity relationships using the Hansch approach.

作者信息

Grady R W, Blobstein S H, Meshnick S R, Ulrich P C, Cerami A, Amirmoazzami J, Hodnett E M

出版信息

J Cell Biochem. 1984;25(1):15-29. doi: 10.1002/jcb.240250103.

Abstract

It has previously been found that naphthoquinones can potentiate the rate of hydrogen peroxide production by mitochondrial preparations of Trypanosoma brucei brucei and that organisms treated with naphthoquinones are more susceptible to lysis, especially in the presence of compounds such as heme, which promote the homolytic cleavage of hydrogen peroxide. We have evaluated the lytic effect of various N-substituted p-benzoquinone imines both in vitro and in vivo and have attempted to correlate their structure with trypanocidal activity using the Hansch approach. While none of the compounds tested proved to be active in vivo, all caused the lysis of trypanosomes in vitro. The parameters that correlated best with trypanocidal activity were the conditional redox potential, the lipophilicity of the substituent attached to the nitrogen atom and the number of active hydrogens on the quinonoid ring. These findings suggest two possible modes of action, which may in fact be related. Conjugate nucleophilic addition and/or oxidative damage could be responsible for lysis of the parasites. These same compounds were previously found to be active against the ascitic sarcoma 180 in mice. The strong correlation between antineoplastic activity in vivo and trypanocidal activity in vitro suggests a similar mode of action in both cases. Further studies aimed at developing a quinonelike compound that will be active against trypanosomes in vivo are now in progress.

摘要

此前已发现,萘醌可增强布氏布氏锥虫线粒体制剂产生过氧化氢的速率,并且用萘醌处理过的生物体更易发生裂解,尤其是在存在血红素等促进过氧化氢均裂的化合物时。我们已在体外和体内评估了各种N-取代对苯醌亚胺的裂解作用,并尝试使用汉斯方法将它们的结构与杀锥虫活性相关联。虽然所测试的化合物在体内均无活性,但它们在体外均能引起锥虫裂解。与杀锥虫活性相关性最佳的参数是条件氧化还原电位、连接在氮原子上的取代基的亲脂性以及醌环上活性氢的数量。这些发现提示了两种可能的作用模式,而这两种模式实际上可能是相关的。共轭亲核加成和/或氧化损伤可能是寄生虫裂解的原因。此前还发现这些化合物对小鼠腹水肉瘤180有活性。体内抗肿瘤活性与体外杀锥虫活性之间的强相关性表明在这两种情况下作用模式相似。目前正在进行进一步的研究,旨在开发一种对体内锥虫有活性的醌类化合物。

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