首页> 美国卫生研究院文献>Molecular Medicine >Luteolin an abundant dietary component is a potent anti-leishmanial agent that acts by inducing topoisomerase II-mediated kinetoplast DNA cleavage leading to apoptosis.
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Luteolin an abundant dietary component is a potent anti-leishmanial agent that acts by inducing topoisomerase II-mediated kinetoplast DNA cleavage leading to apoptosis.

机译:木犀草素一种丰富的饮食成分是一种有效的抗利什曼病制剂可通过诱导拓扑异构酶II介导的动质体DNA裂解而导致凋亡。

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摘要

BACKGROUND: Plant-derived flavonoids, which occur abundantly in our daily dietary intake, possess antitumor, antibacterial, and free radical scavenging properties. They form active constituents of a number of herbal and traditional medicines. Several flavonoids have been shown to exert their action by interacting with DNA topoisomerases and promoting site-specific DNA cleavage. Therefore, flavonoids are potential candidates in drug design. We report here that, although the flavonoids luteolin and quercetin are potent antileishmanial agents, luteolin has great promise for acting as a lead compound in the chemotherapy of leishmaniasis, a major concern in developing countries. MATERIALS AND METHODS: Kinetoplast DNA (kDNA) minicircle cleavage in drug-treated parasites was measured by electrophoresis of the total cellular DNA, followed by Southern hybridization using 32P labeled kDNA as a probe. Cell cycle progression and apoptosis were measured by flow cytometry using propidium iodide and fluorescein isothiocyanate (FITC)-labeled Annexin V. RESULTS: Luteolin and quercetin inhibited the growth of Leishmania donovani promastigotes and amastigotes in vitro, inhibited DNA synthesis in promastigotes, and promoted topoisomerase-II-mediated linearization of kDNA minicircles. The IC50 values of luteolin and quercetin were 12.5 microM and 45.5 microM, respectively. These compounds arrest cell cycle progression in L. donovani promastigotes, leading to apoptosis. Luteolin has no effect on normal human T-cell blasts. Both luteolin and quercetin reduced splenic parasite burden in animal models. CONCLUSION: Luteolin and quercetin are effective antileishmanial agents. Quercetin has nonspecific effects on normal human T cells, but luteolin appears nontoxic. So, luteolin can be a strong candidate for antileishmanial drug design.
机译:背景:植物类黄酮在我们的日常饮食中大量存在,具有抗肿瘤,抗菌和清除自由基的特性。它们构成许多草药和传统药物的有效成分。已显示几种类黄酮通过与DNA拓扑异构酶相互作用并促进位点特异性DNA切割发挥作用。因此,类黄酮是药物设计中的潜在候选药物。我们在这里报告说,尽管黄酮类木犀草素和槲皮素是有效的抗衰老剂,但木犀草素有望作为利什曼病的化学治疗中的先导化合物,这是发展中国家的主要关注问题。材料与方法:通过电泳检测总细胞DNA,然后用32P标记的kDNA作探针进行Southern杂交,测量药物处理过的寄生虫中的动塑料DNA(kDNA)微圆切割。使用碘化丙锭和异硫氰酸荧光素(FITC)标记的膜联蛋白V,通过流式细胞术测量细胞周期进程和凋亡。 -II介导的kDNA小环线性化。木犀草素和槲皮素的IC50值分别为12.5 microM和45.5 microM。这些化合物阻止多诺氏乳杆菌(L. donovani)前鞭毛体中的细胞周期进程,导致凋亡。木犀草素对正常人T细胞胚细胞没有影响。木犀草素和槲皮素均可减轻动物模型中的脾脏寄生虫负担。结论:木犀草素和槲皮素是有效的抗疟药。槲皮素对正常人T细胞具有非特异性作用,但木犀草素似乎无毒。因此,木犀草素可以成为抗衰老药物设计的强大候选者。

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