巴氏脲的提取和分离对其抗疟原虫活性和植物化学成分的影响

Leticia Hiromi Ohashi, D. Gontijo, M. F. A. Nascimento, L. Margalho, G. Brandão, A. Oliveira
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引用次数: 1

摘要

摘要:本研究对采自巴西帕尔州Marapanim的巴利考利亚(Palicourea hoffmannseggiana)进行了不同茎叶提取物和组分的制备。采用不同的方法制备乙醇、氢乙醇和水提取物,并对其体外抗恶性疟原虫(W2株)的活性进行了评价,结果表明,乙醇、氢乙醇和水提取物对恶性疟原虫(W2株)的生长抑制作用较低(< 50%)。UPLC-DAD-ESI−MS分析表明,该叶乙醇提取物中存在两种已知的生物碱,lyalosidic酸和strictosidic酸,以及lyalosidic酸的sinapoyl酯,其m/z为719.33 [m +H]+,可能是一种新的单萜吲哚生物碱的代表。从叶乙醇提取物和直接从叶粉中分离液-液-酸-碱生物碱,对寄生生物碱的抑制作用增强,达到92.5±0.7%。活性组分中含有β-碳碱类生物碱哈曼碱和4-甲基β-碳碱类生物碱,以及n -甲基色胺和n -乙酰色胺,而活性组分中检测到单萜吲哚类生物碱。目前的结果表明,这些初步的分离方法可以导致显著的活性组分支持适当的规模进行抗疟原虫化合物的分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extraction and Fractionation Effects on Antiplasmodial Activity and Phytochemical Composition of Palicourea hoffmannseggiana
Abstract The present study on Palicourea hoffmannseggiana, which was collected at Marapanim, state of Pará, Brazil, comprises the preparation of different stem and leaf extracts and fractions. Ethanol, hydroethanol, and water extracts were prepared by several methods and evaluated for in vitro activity against resistant Plasmodium falciparum (W2 strain), disclosing a low parasite growth inhibition effect (< 50%). Dereplication by UPLC-DAD-ESI−MS of the leaf ethanol extract showed the presence of two known alkaloids, lyalosidic and strictosidinic acids, along with a sinapoyl ester of lyalosidic acid, with m/z 719.33 [M+H]+, which is possibly a new monoterpene indole alkaloid representative. Sequential liquid-liquid acid-base alkaloid separations from the leaf ethanol extract as well as directly from leaf powder afforded fractions of increased parasite growth inhibition, reaching up to 92.5±0.7%. The most bioactive fractions were shown to contain the β-carboline alkaloids harmane and 4-methyl-β-carboline, along with N-methyl-tryptamine and N-acetyl-tryptamine, while monoterpene indole alkaloids were detected in inactive fractions of these processes. The present results demonstrate that these preliminary fractionation methods can lead to significantly active fractions supporting an adequate scale-up to carrying out the isolation of anti-plasmodial compounds.
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