白菖蒲固定油的化学成分、抗寄生虫活性及细胞毒性研究。(3)、青松(Syagrus cearensis Noblick)和棘足Acrocomia aculeata (Jacq.)Lodd。R.Keith交货

José Thyálisson da Costa Silva , Rafael Pereira da Cruz , Miriam Rolón , Cathia Coronel , Celeste Vega Gómez , José Jailson Lima Bezerra , Marcos Aurélio Figueirêdo dos Santos , Raimundo Samuel Leite Sampaio , Viviane Bezerra da Silva , Nathallia Correia da Silva , Ana Letícia Gonçalves Pereira , Vanessa Leopoldino Coelho Rodrigues , Bárbara Fernandes Melo , Saulo Almeida Menezes , Tiana Tasca , Maria Flaviana Bezerra Morais-Braga , Henrique Douglas Melo Coutinho , José Weverton Almeida-Bezerra
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引用次数: 0

摘要

恰加斯病、利什曼病和滴虫病是由影响人类和动物健康的原生动物寄生虫引起的被忽视的疾病。本种Attalea speciosa Mart。(3)、青松(Syagrus cearensis Noblick)和棘足Acrocomia aculeata (Jacq.)Lodd。巴西和玻利维亚的传统社区使用基思来治疗利什曼病和其他传染病。在此背景下,本研究旨在研究这些棕榈树的固定油的化学成分、抗寄生虫活性以及体外和体内的细胞毒性。经植物化学分析,针叶刺槐(A. aculeata, OFAA)、特花刺槐(A. speciosa, OFAS)和蜡叶刺槐(S. cearensis, OFSC)固定油的成分相似,月桂酸含量最高(41.71 ~ 47.21 %)。结果表明,OFAA、OFAS和OFSC不具有杀毛虫活性(抑制范围为0 % ~ 2.06 %)或杀锥虫活性(抑制范围为10.39 % ~ 14.14 %)。对亚马逊利什曼原虫(Leishmania amazonensis)的抑制率为40.39 % ~ 42.24 %。在NCTC 929成纤维细胞中,未观察到OFAA、OFAS和OFSC的细胞毒性。硅试验表明,主要化合物月桂酸也没有出现相应的毒性。尽管对阴道毛滴虫和克氏锥虫没有抗寄生活性,但三种固定油对病原菌亚马逊乳杆菌有中等的抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical composition, antiparasitic activity, and cytotoxicity of fixed oils from Attalea speciosa Mart., Syagrus cearensis Noblick, and Acrocomia aculeata (Jacq.) Lodd. ex R.Keith
Chagas disease, leishmaniasis, and trichomoniasis are neglected diseases caused by protozoan parasites that affect human and animal health. The species Attalea speciosa Mart., Syagrus cearensis Noblick, and Acrocomia aculeata (Jacq.) Lodd. ex R.Keith are used by traditional communities in Brazil and Bolivia for the treatment of leishmaniasis and other infectious diseases. In this context, the present study aimed to investigate the chemical composition, antiparasitic activity, and cytotoxicity in vitro and in silico of fixed oils from these palm trees. Phytochemical analysis of fixed oils from A. aculeata (OFAA), A. speciosa (OFAS), and S. cearensis (OFSC) revealed similar composition, with lauric acid being predominant in the three species (41.71–47.21 %). It was demonstrated that OFAA, OFAS, and OFSC did not present trichomonacidal (inhibition ranging from 0 % to 2.06 %) or trypanocidal (inhibition ranging from 10.39 % to 14.14 %) activity. The most relevant results were observed against Leishmania amazonensis (inhibition ranging from 40.39 % to 42.24 %). No cytotoxicity of OFAA, OFAS, and OFSC was observed when evaluated in NCTC 929 fibroblasts. The in silico test showed that the major compound lauric acid also did not present relevant toxicity. Despite not exhibiting antiparasitic activity against strains of Trichomonas vaginalis and Trypanosoma cruzi, the fixed oils of the three species evaluated showed a moderate effect against the pathogen L. amazonensis.
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