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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Activities and conformational fitting of 1,4-naphthoquinone derivatives and other cyclic 1,4-diones tested in vitro against Pneumocystis carinii.
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Activities and conformational fitting of 1,4-naphthoquinone derivatives and other cyclic 1,4-diones tested in vitro against Pneumocystis carinii.

机译:在体外针对卡氏肺孢子虫测试了1,4-萘醌衍生物和其他环状1,4-二酮的活性和构象拟合。

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摘要

Atovaquone is a chemotherapeutic agent used to treat pneumonia caused by Pneumocystis carinii in some immunocompromised patients. A set of cyclic 1,4-diones were tested in vitro for ability to inhibit growth of P. carinii, including 22 variously substituted 1,4-naphthoquinones, one bis-1,4-naphthoquinone, and three other quinones. For comparison, the antipneumocystic primaquine and its 5-hydroxy-6-desmethyl metabolite were also tested. At 1.0 microg/ml, seven compounds inhibited growth by at least 39%, with atovaquone at 92%; of these seven, five are 2-hydroxy-1,4-naphthoquinones, while one is a 2-chloro- and another is a 2-methyl-1,4-naphthoquinone. At 0.1 microg/ml, however, the most active compound tested was the primaquine metabolite, which inhibited growth by more than 42% at this concentration. To ascertain a structure-activity relationship, all 1,4-naphthoquinones were compared conformationally by means of computer-based molecular modeling (Spartan) incorporating the Sybyl force field. Without exception, for all 21 monomers tested, the substituent at position 3 of the 1,4-naphthoquinone favored activity most strongly when it simultaneously occupied (i) space centered at about 3 A from position 3, without projecting steric bulk from the area encompassed by atovaquone's cyclohexyl ring, and (ii) roughly planar space at about 7.3 A from position 3, without projecting steric bulk perpendicularly. This structure-activity relationship may prove useful in the rational design of better antipneumocystis agents.
机译:Atovaquone是一种化学治疗剂,用于治疗某些免疫功能低下患者的卡氏肺孢子虫引起的肺炎。在体外测试了一组环状1,4-二酮抑制卡氏疟原虫生长的能力,包括22个不同取代的1,4-萘醌,一个bis-1,4-萘醌和三个其他醌。为了进行比较,还测试了抗肺气囊伯氨喹及其5-羟基-6-去甲基代谢产物。浓度为1.0微克/毫升时,有7种化合物抑制了至少39%的生长,其中阿托伐醌为92%。在这七个中,五个是2-羟基-1,4-萘醌,一个是2-氯-,另一个是2-甲基-1,4-萘醌。但是,浓度为0.1微克/毫升时,测试的活性最高的化合物是伯氨喹代谢产物,在该浓度下抑制生长超过42%。为了确定结构-活性关系,通过结合Sybyl力场的基于计算机的分子模型(Spartan),对所有1,4-萘醌进行构象比较。无一例外地,对于所有测试的21种单体,当1,4-萘醌的3位上的取代基同时占据(i)距离3位约3 A的空间,而没有从所包围的区域投射出空间体积时,则最强地促进了活性。 (ii)从位置3起大约7.3 A处的大致平面空间,而不垂直突出空间体积。这种结构活性关系可能被证明在合理设计更好的抗肺孢子囊菌药物中有用。

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