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首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Mechanism of action of anti-proliferative lysophospholipid analogues against the protozoan parasite Trypanosoma cruzi: potentiation of in vitro activity by the sterol biosynthesis inhibitor ketoconazole.
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Mechanism of action of anti-proliferative lysophospholipid analogues against the protozoan parasite Trypanosoma cruzi: potentiation of in vitro activity by the sterol biosynthesis inhibitor ketoconazole.

机译:抗增殖的溶血磷脂类似物对原生动物寄生虫克氏锥虫的作用机理:固醇生物合成抑制剂酮康唑增强了体外活性。

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摘要

We investigated the mechanism of action of metabolically stable lysophospholipid analogues (LPAs), with potent anti-tumour and anti-protozoal activity against Trypanosoma cruzi, the causative agent of Chagas' disease. Against the axenically grown epimastigote form of the parasite, the IC(50)s after 120 h for ET-18-OCH(3), miltefosine and ilmofosine were 3, 1 and 3 microM, respectively; at higher concentrations immediate lytic effects were observed. Eradication of the intracellular amastigote, grown inside Vero cells, was achieved at 0.1, 0.1 and 1 microM for ET-18-OCH(3), miltefosine and ilmofosine, respectively. Analysis of the lipid composition of epimastigotes exposed to LPAs at their IC(50) for 120 h showed that the ratio of phosphatidyl-choline (PC) to phosphatidylethanolamine (PE) changed from 1.5 in control cells to c. 0.67 in those treated with the analogues. A significant increase in the content of phosphatidylserine was also observed in treated cells. Intact epimastigotes efficiently incorporated radioactivity from L-[methyl-(14)C]methionine into PC, but not from [methyl-(14)C]choline. ET-18-OCH(3) inhibited the incorporation of L-[methyl-(14)C]methionine into PC with an IC(50) of 2 microM, suggesting that inhibition of the de novo synthesis through the Greenberg's pathway was a primary effect underlying the selective anti-parasitic activity of this compound. Antiproliferative synergism was observed as a consequence of combined treatment of epimastigotes with ET-18-OCH(3) and ketoconazole, a sterol biosynthesis inhibitor, probably due to the fact that a secondary effect of the latter is also a blockade of PC synthesis at the level of PE-PC-N-methyl-transferase.
机译:我们研究了代谢稳定的溶血磷脂类似物(LPA)的作用机制,对南美锥虫病的致病性克鲁氏锥虫具有有效的抗肿瘤和原生动物活性。针对寄生虫的无性生长的表鞭鞭毛形式,ET-18-OCH(3),miltefosine和ilmofosine在120 h后的IC(50)分别为3、1和3 microM。在较高浓度下,立即观察到裂解作用。 ET-18-OCH(3),miltefosine和ilmofosine分别以0.1、0.1和1 microM消除了Vero细胞内部生长的胞内鞭毛体。对暴露于LPA的IC(50)处120 h的表鞭毛象的脂质组成的分析表明,对照细胞中的磷脂酰胆碱(PC)与磷脂酰乙醇胺(PE)的比例从1.5变为c。用类似物治疗的患者为0.67。在处理过的细胞中也观察到磷脂酰丝氨酸含量的显着增加。完整的表鞭毛雌蕊有效地将L- [甲基-(14)C]蛋氨酸的放射性掺入PC,但不能将[甲基-(14)C]胆碱的放射性掺入PC。 ET-18-OCH(3)抑制L- [甲基-(14)C]蛋氨酸掺入PC,IC(50)为2 microM,这表明通过格林伯格途径抑制从头合成是主要的该化合物的选择性抗寄生虫活性的潜在作用。 ET-18-OCH(3)和酮康唑是一种固醇生物合成抑制剂,联合治疗了表鞭鞭毛纲动物,因此观察到了抗增殖协同作用,这可能是由于后者的次要作用也是在PC上阻断PC合成的事实​​。 PE-PC-N-甲基转移酶的水平

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