掌车前草免疫调节多糖的部分化学性质。f.树叶

G. Biringanine, Moustapha Ouédraogo, B. Vray, A. B. Samuelsen, P. Duez
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引用次数: 11

摘要

先前关于车前草棕榈多糖(PS)的研究将其叶片的免疫调节特性归因于多糖部分(PS50),该部分通过干扰素γ- (IFN-γ-)激活的巨噬细胞刺激NO和TNF-α的产生。本研究旨在阐明这些免疫调节多糖的化学结构。粒径排阻色谱分析表明,活性聚合物的活性组分具有非常高的分子量(约1200 kDa)。这些多糖本质上是果胶的,主要具有未支化的半乳酸结构域,其结构域的侧链由高度支化的阿拉伯聚糖、半乳聚糖和/或阿拉伯半乳聚糖组成。与众所周知的车前草主要生物活性PS相比,车前草PS50含有较少的阿拉伯半乳糖蛋白(AGPs),并且葡萄糖、半乳糖和半乳糖醛酸的组成不同。多糖的DNA污染估计约为0.04%,远低于透明质酸制剂中报道的免疫调节浓度(3 - 15%)。因此,可以排除污染dna介导的生物活性的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Partial Chemical Characterization of Immunomodulatory Polysaccharides from Plantago palmata Hook. f. s. Leaves
A previous work on Plantago palmata polysaccharides (PS) attributed immunomodulatory properties of leaves to a polysaccharide fraction (PS50) that stimulated NO and TNF-α production by interferon gamma- (IFN-γ-) activated macrophages. The present work aims to elucidate the chemical structure of these immunomodulatory polysaccharides. Size exclusion chromatography showed that the active polymers present an active fraction with a very high molecular weight (about 1200 kDa). These polysaccharides are pectic in nature, with a predominantly unbranched galacturonan domain and with a domain bearing side chains that consist of highly branched arabinan, galactan, and/or arabinogalactan. Comparatively to the well-known Plantago major biologically active PS, Plantago palmata PS50 contained less arabinogalactan-proteins (AGPs) and had a different composition in glucose, galactose, and galacturonic acid. DNA contamination of the polysaccharide was estimated at about 0.04%, a concentration much lower than those reported immunomodulatory in hyaluronic acid preparations (3 to 15%). Therefore, the eventuality of a contaminating DNA-mediated biological activity could be ruled out.
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