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根茎的植物化学分析与生物活性()。 (注:原文括号部分内容缺失,译文按原样呈现)

Phytochemical Analysis and Bioactivity of Rhizome ().

作者信息

Nikkhah Elhameh, Heshmati Afshar Fariba, Babaei Hossein, Asgharian Parina, Delazar Abbas

机构信息

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Iran J Pharm Res. 2018 Spring;17(2):685-694.

Abstract

is a medicinal plant used as a traditional herb. This study was designed to investigate the phytochemical analysis of methanol (MeOH), DCM, and n-Hexane extracts of rhizome as well as total phenol and total flavonoid contents (TPC and TFC). β-hematin formation assay and DPPH method were applied for analyzing antimalarial and free-radical scavenging activities of the extracts, respectively. The formation of hemozoin has been proposed as an ideal drug target for antimalarial screening programs. The results showed that n-hexane and MeOH extracts of rhizome had no significant inhibitory effect on heme biocrystallization whereas the DCM extract of rhizome showed moderate antimalarial activity in comparison with chloroquine. GC-MS data showed that volatile portions of DCM and n-Hexane extracts from contained a few identifiable compounds. Moreover, fractions 20% and 40% MeOH-Water of MeOH extract of displayed moderate to strong free radical scavenging activity which showed a positive relation between phenolic and flavonoid contents and free radical scavenging activity. Based on the results, the fractions of MeOH extract were evaluated by HNMR for predicting the groups of natural compounds and interfacing of chemical and biological assessments.

摘要

是一种用作传统草药的药用植物。本研究旨在调查根茎的甲醇(MeOH)、二氯甲烷(DCM)和正己烷提取物的植物化学分析以及总酚和总黄酮含量(TPC和TFC)。分别采用β-疟色素形成试验和DPPH法分析提取物的抗疟和自由基清除活性。疟原虫色素的形成已被提议作为抗疟筛选项目的理想药物靶点。结果表明,根茎的正己烷和甲醇提取物对血红素生物结晶没有显著抑制作用,而根茎的二氯甲烷提取物与氯喹相比显示出中等抗疟活性。气相色谱-质谱(GC-MS)数据表明,来自[具体来源未明确,原文此处缺失相关信息]的二氯甲烷和正己烷提取物的挥发性部分含有一些可识别的化合物。此外,[具体来源未明确,原文此处缺失相关信息]甲醇提取物的20%和40%甲醇-水馏分表现出中度至强的自由基清除活性,这表明酚类和黄酮类含量与自由基清除活性之间存在正相关关系。基于这些结果,通过核磁共振氢谱(HNMR)对甲醇提取物的馏分进行评估,以预测天然化合物的类别并连接化学和生物学评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34f2/5985186/7f5da9eb582c/ijpr-17-685-g001.jpg

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