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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Increased ROS generation causes apoptosis-like death: Mechanistic insights into the anti-Leishmania activity of a potent ruthenium(II) complex
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Increased ROS generation causes apoptosis-like death: Mechanistic insights into the anti-Leishmania activity of a potent ruthenium(II) complex

机译:增加的ROS生成会导致细胞凋亡的死亡:机械洞察力富含钌(II)复合物的抗Leishmania活性

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摘要

Some metallodrugs that exhibit interesting biological activity contain transition metals such as ruthenium, and have been extensively exploited because of their antiparasitic potential. In previous study, we reported the remarkable anti-Leishmania activity of precursor cis-[(RuCl2)-Cl-II(dppm)(2)], where dppm = bis(diphenylphosphino) methane, and new ruthenium(II) complexes, cis-[Ru-II(eta(2)-O2CC10H13)(dppm)(2)]PF6 (bbato), cis-[Ru-II(eta(2)-O2CC7H7S)(dppm)(2)]PF6 (mtbato) and cis-[Ru-II(eta(2)-O2CC7H7O2)(dppm)(2)]PF6 (hmxbato) against some Leishmania species. In view of the promising activity of the hmxbato complex against Leishmania (Leishmania) amazonensis promastigotes, the present work investigated the possible parasite death mechanism involved in the action of this hmxbato and its precursor. We report, for the first time, that hmxbato and precursor promoted an increase in reactive oxygen species production, depolarization of the mitochondria] membrane, DNA fragmentation, formation of a pre-apoptotic peak, alterations in parasite morphology and formation of autophagic vacuoles. Taken together, our results suggest that these ruthenium complexes cause parasite death by apoptosis. Thus, this work provides relevant knowledge on the activity of ruthenium(II) complexes against L. (L.) amazonensis. Such information will be essential for the exploitation of these complexes as future candidates for cutaneous leishmaniasis treatment.
机译:一些表现出有趣的生物活性的金属解压含有过渡金属,例如钌,并且由于其抗寄生虫潜力而被广泛利用。在先前的研究中,我们报道了前体CIS-[(RUCL2)-CL-II(DPPM)(2)]的显着抗LeishMania活性,其中DPPM =双(二苯基膦基)甲烷和新的钌(II)复合物,顺式 - [Ru-II(ETA(2)-O2CC11313)(DPPM)(2)] PF6(BBOA),CIS-[RU-II(ETA(2)-O2cc7H7)(DPPM)(2)] PF6(MTBOA)和CIS- [Ru-II(eta(2)-O2cc7h7O2)(dppm)(2)] pf6(hmxbato)对一些Leishmania物种。鉴于HMXBato综合体对Leishmania(Leishmania)Amazonensis Promastigotes的有希望的活动,目前的作品研究了涉及该HMXBOATO及其前体的可能寄生虫死亡机制。我们首次报告HMXBato和前体促进了活性氧物质的增加,线粒体的去极化,线粒体的去极化,DNA片段化,形成前凋亡峰,寄生虫形态的改变和自噬型吸尘器的形成。我们的结果表明,这些钌配合物引起凋亡寄生虫。因此,该作品提供了关于钌(II)复合物对L.(L.)Amazonensis的活性的相关知识。这些信息对于将这些复合物的利用是必不可少的,作为皮肤嗜利亚病治疗的未来候选人。

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