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In Vivo Anti-Trypanosoma cruzi Activity of Hydro-Ethanolic Extract and Isolated Active Principles from Aristeguietia glutinosa and Mechanism of Action Studies

机译:乙醇提取物的分离液活性成分及体内研究的体内抗克鲁氏锥虫活性及其作用机理

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The currently available treatments for Chagas disease show limited therapeutic potential and are associated with serious side effects. Attempting to find alternative drugs isolated from Nature as agents against Trypanosoma cruzi has been our goal. Recently, we have demonstrated the in vitro anti-T. cruzi activities of two secondary metabolites isolated from the hydro-ethanolic extract of the aerial parts of Aristeguietia glutinosa (Lam.), (family Asteraceae). These active principles displayed poor hemolytic activity, low toxicity against murine macrophages, and absence of mutagenicity. Herein, proof of concept in vivo studies of the whole hydro-ethanolic extract of the aerial parts of Aristeguietia glutinosa and of the most active component isolated from the hydro-ethanolic extract, i.e., (+)-15- hydroxy-7-labden-17-al, was done in a murine acute model of Chagas disease. Both treatments caused a decrease in the animals’ parasitemia. Metabolomic mechanism of action studies were done by ~1H-NMR, both on the extract and on the active compounds, examining the effects of the metabolites both on membrane sterol biosynthesis and mitochondrial dehydrogenases, whereby we found that one of the metabolites inhibited the activity of the parasite mitochondrial dehydrogenases and the other inhibited the biosynthesis of parasite membrane sterols. The results are interesting in the context of popular use of plants for the treatment of Chagas disease.
机译:恰加斯病的当前可用疗法显示出有限的治疗潜力并且与严重的副作用有关。试图找到从大自然中分离出来的替代克氏锥虫的药物一直是我们的目标。最近,我们已经证明了体外抗T。从Aristeguietia glutinosa(Lam。)(菊科)的空中部分的氢乙醇提取物中分离得到的两个次要代谢物的克鲁兹活性。这些活性成分显示出较差的溶血活性,对鼠巨噬细胞的低毒性以及没有诱变性。在此,对谷胱甘肽(Aristeguietia glutinosa)地上部分的全氢乙醇提取物以及从该氢乙醇提取物中分离出的最有活性的成分,即(+)-15-羟基-7-labden-图17-al是在恰加斯病的鼠急性模型中完成的。两种治疗方法均能减少动物的寄生虫病。通过〜1H-NMR对代谢物和活性化合物进行了代谢组学作用机理研究,研究了代谢物对膜固醇生物合成和线粒体脱氢酶的影响,从而我们发现一种代谢物抑制了其活性。寄生虫的线粒体脱氢酶和其他抑制寄生虫膜固醇的生物合成。在广泛使用植物治疗南美锥虫病的背景下,结果令人感兴趣。

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