Identification and characterization of novel marine oxasqualenoid yucatecone against Naegleria fowleri

IF 4.1 2区 医学 Q1 PARASITOLOGY
Iñigo Arberas-Jiménez , Francisco Cen-Pacheco , Javier Chao-Pellicer , Ines Sifaoui , Aitor Rizo-Liendo , Ezequiel Q. Morales , Antonio H. Daranas , Ana R. Díaz-Marrero , José E. Piñero , José J. Fernández , Jacob Lorenzo-Morales
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引用次数: 1

Abstract

Naegleria fowleri is an opportunistic protozoan, belonging to the free-living amoeba group, that can be found in warm water bodies. It is causative agent the primary amoebic meningoencephalitis, a fulminant disease with a rapid progression that affects the central nervous system. However, no 100% effective treatments are available and those that are currently used involve the appearance of severe side effects, therefore, there is an urgent need to find novel antiamoebic compounds with low toxicity. In this study, the in vitro activity of six oxasqualenoids obtained from the red algae Laurencia viridis was evaluated against two different strains of N. fowleri (ATCC® 30808 and ATCC® 30215) as well as their cytotoxicity against murine macrophages. Yucatecone was the molecule with the highest selectivity index (>2.98 and 5.23 respectively) and it was selected to continue with the cell death type determination assays. Results showed that yucatone induced programmed cell death like responses in treated amoebae causing DNA condensation and cellular membrane damage among others. In this family of oxasqualenoids, it seems that the most significative structural feature to induce activity against N. fowleri is the presence of a ketone at C-18. This punctual oxidation transforms an inactive compound into a lead compound as the yucatecone and 18-ketodehydrotyrsiferol with IC50 values of 16.25 and 12.70 μM, respectively. The assessment of in silico ADME/Tox analysis revealed that the active compounds showed good Human Oral Absorption and demonstrate that are found to be within the limit of approved drug parameter range. Hence, the study highlights promising potential of yucatone to be tested for therapeutic use against primary amoebic meningoencephalitis.

Abstract Image

新型海洋抗福氏奈格丽氏线虫草烯类酸果酮的鉴定与特性研究
福氏奈格里虫是一种机会性原生动物,属于自由生活的变形虫群,可以在温暖的水体中找到。它是原发性阿米巴脑膜脑炎的病原体,这种疾病进展迅速,影响中枢神经系统。然而,目前还没有100%有效的治疗方法,而且目前使用的治疗方法会出现严重的副作用,因此,迫切需要找到低毒的新型抗阿米巴化合物。在本研究中,评估了从红藻Laurencia viridis获得的六种草酸角鲨烯类化合物对两种不同的福氏猪笼草菌株(ATCC®30808和ATCC®30215)的体外活性及其对小鼠巨噬细胞的细胞毒性。Yucatecone是具有最高选择性指数(分别>2.98和5.23)的分子,并且选择它继续进行细胞死亡类型测定。结果表明,在处理过的变形虫中,尤卡通诱导了程序性细胞死亡样反应,导致DNA凝结和细胞膜损伤等。在这个类草酸角鲨烯家族中,诱导对福氏猪笼草活性的最有意义的结构特征似乎是C-18存在酮。这种准时氧化将一种无活性化合物转化为一种先导化合物,即儿茶酮和18-酮脱氢酪醇,IC50值分别为16.25和12.70μM。计算机ADME/Tox分析的评估显示,活性化合物显示出良好的人体口服吸收,并证明其在批准的药物参数范围内。因此,该研究强调了尤卡通在治疗原发性阿米巴脑膜脑炎方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.90
自引率
7.50%
发文量
31
审稿时长
48 days
期刊介绍: The International Journal for Parasitology – Drugs and Drug Resistance is one of a series of specialist, open access journals launched by the International Journal for Parasitology. It publishes the results of original research in the area of anti-parasite drug identification, development and evaluation, and parasite drug resistance. The journal also covers research into natural products as anti-parasitic agents, and bioactive parasite products. Studies can be aimed at unicellular or multicellular parasites of human or veterinary importance.
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