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来自马里药用植物大翅榄仁树根皮、茎皮和叶的免疫调节果胶,结构活性关系

Immunomodulating pectins from root bark, stem bark, and leaves of the Malian medicinal tree Terminalia macroptera, structure activity relations.

作者信息

Zou Yuan-Feng, Barsett Hilde, Ho Giang Thanh Thi, Inngjerdingen Kari Tvete, Diallo Drissa, Michaelsen Terje Einar, Paulsen Berit Smestad

机构信息

Department of Pharmaceutical Chemistry, School of Pharmacy, University of Oslo, PO Box 1068, Blindern, 0316 Oslo, Norway.

Department of Traditional Medicine, BP 1746 Bamako, Mali.

出版信息

Carbohydr Res. 2015 Feb 11;403:167-73. doi: 10.1016/j.carres.2014.05.004. Epub 2014 May 21.

Abstract

The root bark, stem bark, and leaves of Terminalia macroptera were sequentially extracted with ethanol, 50% ethanol-water, and 50°C water using an accelerated solvent extractor (ASE). Six bioactive purified pectic polysaccharide fractions were obtained from the 50°C crude water extracts after anion exchange chromatography and gel filtration. The root bark, stem bark, and leaves of T. macroptera were all good sources for fractions containing bioactive polysaccharides. The high molecular weight fraction 50WTRBH-I-I, being the most active fraction in the complement fixation test, has a highly ramified rhamnogalacturonan type I (RG-I) region with arabinogalactan type II (AG-II) side chains. The most abundant fractions from each plant part, 50WTRBH-II-I, 50WTSBH-II-I, and 50WTLH-II-I, were chosen for pectinase degradation. The degradation with pectinase revealed that the main features of these fractions are that of pectic polysaccharides, with hairy regions (RG-I regions) and homogalacturonan regions. The activity of the fractions obtained after pectinase degradation and separation by gel filtration showed that the highest molecular weight fractions, 50WTRBH-II-Ia, 50WTSBH-II-Ia, and 50WTLH-II-Ia, had higher complement fixation activity than their respective native fractions. These results suggest that the complement fixation activities of these pectins are expressed mainly by their ramified regions.

摘要

使用加速溶剂萃取仪(ASE),依次用乙醇、50%乙醇 - 水和50°C水对大翅榄仁的根皮、茎皮和叶进行萃取。经阴离子交换色谱和凝胶过滤后,从50°C的粗水提取物中获得了六种具有生物活性的纯化果胶多糖级分。大翅榄仁的根皮、茎皮和叶都是含有生物活性多糖级分的良好来源。高分子量级分50WTRBH - I - I是补体固定试验中活性最高的级分,具有高度分支的鼠李半乳糖醛酸聚糖I型(RG - I)区域和阿拉伯半乳聚糖II型(AG - II)侧链。从每个植物部位选取最丰富的级分50WTRBH - II - I、50WTSBH - II - I和50WTLH - II - I进行果胶酶降解。果胶酶降解显示这些级分的主要特征是果胶多糖的特征,具有多毛区域(RG - I区域)和同型半乳糖醛酸区域。经果胶酶降解并通过凝胶过滤分离后获得的级分的活性表明,最高分子量的级分50WTRBH - II - Ia、50WTSBH - II - Ia和50WTLH - II - Ia比其各自的天然级分具有更高的补体固定活性。这些结果表明,这些果胶的补体固定活性主要由其分支区域表达。

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