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麦角甾酮偶联的三唑分子引发前鞭毛体中的线粒体功能障碍、氧化应激和酸性钙小体钙释放。

Ergosterone-coupled Triazol molecules trigger mitochondrial dysfunction, oxidative stress, and acidocalcisomal Ca release in promastigotes.

作者信息

Figarella K, Marsiccobetre S, Arocha I, Colina W, Hasegawa M, Rodriguez M, Rodriguez-Acosta A, Duszenko M, Benaim G, Uzcategui N L

机构信息

Laboratory of Genomics and Proteomics, Biotechnology Center, IDEA Foundation. Caracas, Venezuela.

Laboratory of Natural Products, School of Chemistry, Central University of Venezuela, Venezuela.

出版信息

Microb Cell. 2015 Dec 11;3(1):14-28. doi: 10.15698/mic2016.01.471.

Abstract

The protozoan parasite causes a variety of sicknesses with different clinical manifestations known as leishmaniasis. The chemotherapy currently in use is not adequate because of their side effects, resistance occurrence, and recurrences. Investigations looking for new targets or new active molecules focus mainly on the disruption of parasite specific pathways. In this sense, ergosterol biosynthesis is one of the most attractive because it does not occur in mammals. Here, we report the synthesis of ergosterone coupled molecules and the characterization of their biological activity on promastigotes. Molecule synthesis involved three steps: ergosterone formation using Jones oxidation, synthesis of Girard reagents, and coupling reaction. All compounds were obtained in good yield and high purity. Results show that ergosterone-triazol molecules (Erg-GTr and Erg-GTr) exhibit an antiproliferative effect in low micromolar range with a selectivity index ~10 when compared to human dermic fibroblasts. Addition of Erg-GTr or Erg-GTr to parasites led to a rapid [Ca] increase and acidocalcisomes alkalinization, indicating that Ca was released from this organelle. Evaluation of cell death markers revealed some apoptosis-like indicators, as phosphatidylserine exposure, DNA damage, and cytosolic vacuolization and autophagy exacerbation. Furthermore, mitochondrion hyperpolarization and superoxide production increase were detected already 6 hours after drug addition, denoting that oxidative stress is implicated in triggering the observed phenotype. Taken together our results indicate that ergosterone-triazol coupled molecules induce a regulated cell death process in the parasite and may represent starting point molecules in the search of new chemotherapeutic agents to combat leishmaniasis.

摘要

原生动物寄生虫会引发多种具有不同临床表现的疾病,即利什曼病。目前使用的化疗方法并不理想,因为它们存在副作用、会产生耐药性且易复发。寻找新靶点或新活性分子的研究主要集中在破坏寄生虫的特定途径上。从这个意义上说,麦角固醇生物合成是最具吸引力的途径之一,因为哺乳动物体内不存在这种合成过程。在此,我们报告了麦角甾酮偶联分子的合成及其对前鞭毛体的生物活性表征。分子合成涉及三个步骤:使用琼斯氧化法形成麦角甾酮、合成吉拉德试剂以及偶联反应。所有化合物均以高收率和高纯度获得。结果表明,与人类皮肤成纤维细胞相比,麦角甾酮 - 三唑分子(Erg - GTr和Erg - GTr)在低微摩尔范围内表现出抗增殖作用,选择性指数约为10。向寄生虫中添加Erg - GTr或Erg - GTr会导致[Ca]迅速增加以及酸性钙小体碱化,这表明Ca是从该细胞器中释放出来的。对细胞死亡标志物的评估揭示了一些类似凋亡的指标,如磷脂酰丝氨酸暴露、DNA损伤、胞质空泡化和自噬加剧。此外,在添加药物6小时后就检测到线粒体超极化和超氧化物生成增加,这表明氧化应激与触发观察到的表型有关。综合我们的结果表明,麦角甾酮 - 三唑偶联分子在寄生虫中诱导了一个受调控的细胞死亡过程,可能代表了寻找对抗利什曼病新化疗药物的起始点分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d1f/5354587/e9e15d27554f/mic-03-014-g01.jpg

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