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采用复合酶超声法提取的黄花棘豆多糖的结构-免疫调节活性关系。

Structure-immunomodulatory activity relationships of Hedysarum polysaccharides extracted by a method involving a complex enzyme combined with ultrasonication.

机构信息

School of Pharmacy, Lanzhou University, Lanzhou, 730000, P. R. China.

出版信息

Food Funct. 2019 Feb 20;10(2):1146-1158. doi: 10.1039/c8fo02293c.

Abstract

A new, more effective and environmentally friendly method involving a complex enzyme combined with ultrasonication was employed to extract and isolate three novel polysaccharides (HPS-MCs: HPS-MC, HPS-MC (50%) and HPS-MC (80%)) of Radix Hedysari. Compared with polysaccharides obtained using a traditional extraction method (hot water extraction, HPS-R), the yields and total carbohydrate contents of HPS-MCs were significantly higher. HPS-MC (80%) exhibited relatively strong immunomodulatory activity and a concentration-dependent dose-response relationship under cyclophosphamide (CP)-induced immunosuppressive conditions in mice models. To more comprehensively investigate the relationships between structural characteristics and immunomodulatory activity, HPS-MC (80%) was fractionated into three major homogeneous polysaccharide fractions (HPS-MC (80%)s: HPS-MC (80%)-1, HPS-MC (80%)-2, and HPS-MC (80%)-3). These three homogeneous polysaccharides had different mass percentages of monosaccharides species (rhamnose, arabinose, mannose, glucose, and galactose) by gas chromatography (GC) and different molecular weights and chain conformations by high-performance gel permeation chromatography coupled with multi-angle laser light scattering (HPGPC-MALLS), and promoted macrophage and splenocyte proliferation to different degrees. These findings indicated that HPS-MC (80%) had a prominent potential immune response, especially HPS-MC (80%)-2 and HPS-MC (80%)-3, and might be suitable candidates for functional foods or potential novel immunomodulators.

摘要

采用一种新的、更有效和环保的方法,涉及一种复合酶与超声相结合,从中药地黄中提取并分离出三种新型多糖(HPS-MCs:HPS-MC、HPS-MC(50%)和 HPS-MC(80%))。与传统提取方法(热水提取,HPS-R)相比,HPS-MCs 的产率和总糖含量明显更高。HPS-MC(80%)在环磷酰胺(CP)诱导的免疫抑制小鼠模型中表现出相对较强的免疫调节活性和浓度依赖性剂量反应关系。为了更全面地研究结构特征与免疫调节活性之间的关系,将 HPS-MC(80%)进一步分为三个主要的均一多糖组分(HPS-MC(80%)s:HPS-MC(80%)-1、HPS-MC(80%)-2 和 HPS-MC(80%)-3)。这三种均一多糖的单糖种类(鼠李糖、阿拉伯糖、甘露糖、葡萄糖和半乳糖)的气相色谱(GC)百分比不同,分子量和链构象也不同,通过高效凝胶渗透色谱与多角度激光散射(HPGPC-MALLS)。这三种均一多糖均不同程度地促进了巨噬细胞和脾细胞的增殖。这些发现表明 HPS-MC(80%)具有显著的免疫应答潜力,特别是 HPS-MC(80%)-2 和 HPS-MC(80%)-3,可能是功能性食品或潜在新型免疫调节剂的合适候选物。

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