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Potent In Vitro Antiproliferative Synergism of Combinations of Ergosterol Biosynthesis Inhibitors against Leishmania amazonensis

机译:麦角固醇生物合成抑制剂对亚马逊利什曼原虫的有效体外抗增殖协同作用

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摘要

Leishmaniases comprise a spectrum of diseases caused by protozoan parasites of the Leishmania genus. Treatments available have limited safety and efficacy, high costs, and difficult administration. Thus, there is an urgent need for safer and more-effective therapies. Most trypanosomatids have an essential requirement for ergosterol and other 24-alkyl sterols, which are absent in mammalian cells. In previous studies, we showed that Leishmania amazonensis is highly susceptible to aryl-quinuclidines, such as E5700, which inhibit squalene synthase, and to the azoles itraconazole (ITZ) and posaconazole (POSA), which inhibit C-14α-demethylase. Herein, we investigated the antiproliferative, ultrastructural, and biochemical effects of combinations of E5700 with ITZ and POSA against L. amazonensis. Potent synergistic antiproliferative effects were observed against promastigotes, with fractional inhibitory concentration (FIC) ratios of 0.0525 and 0.0162 for combinations of E5700 plus ITZ and of E5700 plus POSA, respectively. Against intracellular amastigotes, FIC values were 0.175 and 0.1125 for combinations of E5700 plus ITZ and E5700 plus POSA, respectively. Marked alterations of the ultrastructure of promastigotes treated with the combinations were observed, in particular mitochondrial swelling, which was consistent with a reduction of the mitochondrial transmembrane potential, and an increase in the production of reactive oxygen species. We also observed the presence of vacuoles similar to autophagosomes in close association with mitochondria and an increase in the number of lipid bodies. Both growth arrest and ultrastructural/biochemical alterations were strictly associated with the depletion of the 14-desmethyl endogenous sterol pool. These results suggest the possibility of a novel combination therapy for the treatment of leishmaniasis.
机译:利什曼原虫病包括由利什曼原虫属的原生动物寄生虫引起的一系列疾病。可用的治疗方法安全性和有效性有限,成本高且给药困难。因此,迫切需要更安全,更有效的疗法。大多数锥虫均对麦角固醇和其他24烷基固醇(哺乳动物细胞中不存在)具有基本要求。在先前的研究中,我们表明亚马逊利什曼原虫对抑制鲨烯合酶的芳基-喹核苷(例如E5700)和抑制C-14α-脱甲基酶的唑类伊曲康唑(ITZ)和泊沙康唑(POSA)高度敏感。本文中,我们研究了E5700与ITZ和POSA联合使用对亚马逊乳杆菌的抗增殖,超微结构和生化作用。观察到了对前鞭毛体的有效的协同抗增殖作用,对于E5700 + ITZ和E5700 + POSA的组合,抑制分数浓度(FIC)的比例分别为0.0525和0.0162。对于细胞内变形虫,E5700加ITZ和E5700加POSA的组合的FIC值分别为0.175和0.1125。观察到用该组合物治疗的前鞭毛体的超微结构的明显改变,特别是线粒体肿胀,这与线粒体跨膜电位的降低和活性氧种类的产生增加是一致的。我们还观察到与自噬体相似的液泡与线粒体密切相关,并且脂质体数量增加。生长停滞和超微结构/生化改变均与14-去甲基内源性固醇池的消耗严格相关。这些结果表明,有可能采用新颖的联合疗法治疗利什曼病。

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