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Potent Antitrypanosomal Activities of 3-Aminosteroids against African Trypanosomes: Investigation of Cellular Effects and of Cross-Resistance with Existing Drugs

机译:3-氨基类固醇对非洲锥虫的有效抗胰锥Activities体活性:细胞效应和与现有药物的交叉耐药性研究

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摘要

Treatment of animal African trypanosomiasis (AAT) requires urgent need for safe, potent and affordable drugs and this has necessitated this study. We investigated the trypanocidal activities and mode of action of selected 3-aminosteroids against Trypanosoma brucei brucei. The in vitro activity of selected compounds of this series against T. congolense (Savannah-type, IL3000), T. b. brucei (bloodstream trypomastigote, Lister strain 427 wild-type (427WT)) and various multi-drug resistant cell lines was assessed using a resazurin-based cell viability assay. Studies on mode of antitrypanosomal activity of some selected 3-aminosteroids against Tbb 427WT were also carried out. The tested compounds mostly showed moderate-to-low in vitro activities and low selectivity to mammalian cells. Interestingly, a certain aminosteroid, holarrhetine (10, IC50 = 0.045 ± 0.03 µM), was 2 times more potent against T. congolense than the standard veterinary drug, diminazene aceturate, and 10 times more potent than the control trypanocide, pentamidine, and displayed an excellent in vitro selectivity index of 2130 over L6 myoblasts. All multi-drug resistant strains of T. b. brucei tested were not significantly cross-resistant with the purified compounds. The growth pattern of Tbb 427WT on long and limited exposure time revealed gradual but irrecoverable growth arrest at ≥ IC50 concentrations of 3-aminosteroids. Trypanocidal action was not associated with membrane permeabilization of trypanosome cells but instead with mitochondrial membrane depolarization, reduced adenosine triphosphate (ATP) levels and G2/M cell cycle arrest which appear to be the result of mitochondrial accumulation of the aminosteroids. These findings provided insights for further development of this new and promising class of trypanocide against African trypanosomes.
机译:动物非洲锥虫病(AAT)的治疗迫切需要安全,有效和负担得起的药物,因此有必要进行这项研究。我们调查了选择性3-氨基类固醇对布鲁氏锥虫锥虫的锥虫杀虫活性和作用方式。选定的该系列化合物的体外抗弓形虫(Savannah型,IL3000),T。b。的体外活性。使用基于刃天青的细胞生存力测定法评估了布鲁氏菌(血锥虫体,Lister菌株427野生型(427WT))和多种耐多药细胞系。还研究了一些选定的3-氨基类固醇对Tbb 427WT的抗胰锥虫活性的模式。受试化合物大多表现出中等至低的体外活性,对哺乳动物细胞的选择性低。有趣的是,某种氨基类固醇,荷尔美汀(10,IC50 = 0.045±0.03 µM),对弓形虫的效力比标准兽药醋酸二米那嗪高2倍,并且比对照的锥虫肽,喷他pot强10倍。与L6成肌细胞相比,具有2130的出色的体外选择性指数。结核杆菌的所有多药耐药菌株。所测试的布鲁斯与纯化的化合物没有明显的交叉抗性。 Tbb 427WT在较长且有限的暴露时间下的生长方式显示,在≥IC50浓度的3-氨基类固醇下,逐渐但无法恢复的生长停滞。锥虫作用与锥虫细胞的膜通透性无关,而与线粒体膜去极化,三磷酸腺苷(ATP)水平降低和G2 / M细胞周期停滞有关,这似乎是氨基类固醇的线粒体积累的结果。这些发现为进一步开发针对非洲锥虫的新型有希望的锥虫病提供了见识。

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