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新型儿茶酚型铁载体对恶性疟原虫的体外活性

In vitro activities of novel catecholate siderophores against Plasmodium falciparum.

作者信息

Pradines B, Ramiandrasoa F, Basco L K, Bricard L, Kunesch G, Le Bras J

机构信息

Laboratoire de Parasitologie, Hôpital Bichat-Claude Bernard, Paris, France.

出版信息

Antimicrob Agents Chemother. 1996 Sep;40(9):2094-8. doi: 10.1128/AAC.40.9.2094.

Abstract

The activities of novel iron chelators, alone and in combination with chloroquine, quinine, or artemether, were evaluated in vitro against susceptible and resistant clones of Plasmodium falciparum with a semimicroassay system. N4-nonyl,N1,N8-bis(2,3-dihydroxybenzoyl) spermidine hydrobromide (compound 7) demonstrated the highest level of activity: 170 nM against a chloroquine-susceptible clone and 1 microM against a chloroquine-resistant clone (50% inhibitory concentrations). Compounds 6, 8, and 10 showed antimalarial activity with 50% inhibitory concentrations of about 1 microM. Compound 7 had no effect on the activities of chloroquine, quinine, and artemether against either clone, and compound 8 did not enhance the schizontocidal action of either chloroquine or quinine against the chloroquine-resistant clone. The incubation of compound 7 with FeCI3 suppressed or decreased the in vitro antimalarial activity of compound 7, while no effect was observed with incubation of compound 7 with CuSO4 and ZnSO4. These results suggest that iron deprivation may be the main mechanism of action of compound 7 against the malarial parasites. Chelator compounds 7 and 8 primarily affected trophozoite stages, probably by influencing the activity of ribonucleotide reductase, and thus inhibiting DNA synthesis.

摘要

采用半微量分析系统,在体外评估了新型铁螯合剂单独使用以及与氯喹、奎宁或蒿甲醚联合使用时对恶性疟原虫敏感株和耐药株的活性。N4-壬基,N1,N8-双(2,3-二羟基苯甲酰)亚精胺氢溴酸盐(化合物7)表现出最高活性水平:对氯喹敏感株的半数抑制浓度为170 nM,对氯喹耐药株的半数抑制浓度为1 μM。化合物6、8和10显示出抗疟活性,半数抑制浓度约为1 μM。化合物7对氯喹、奎宁和蒿甲醚针对任一克隆的活性均无影响,化合物8也未增强氯喹或奎宁对氯喹耐药株的裂殖体杀灭作用。化合物7与FeCl3孵育会抑制或降低化合物7的体外抗疟活性,而化合物7与CuSO4和ZnSO4孵育则未观察到影响。这些结果表明,铁剥夺可能是化合物7对抗疟原虫的主要作用机制。螯合剂化合物7和8主要影响滋养体阶段,可能是通过影响核糖核苷酸还原酶的活性,从而抑制DNA合成。

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