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植物乳杆菌发酵玉米须两种高度支化多糖对急性肝损伤的保护作用。

The protective effect of two highly branched polysaccharides from corn silk fermented by Lactobacillus plantarum against acute liver injury.

机构信息

School of Life Sciences and Health Engineering, Jiangnan University, Wuxi 214122, China.

出版信息

Carbohydr Polym. 2025 Jan 1;347:122799. doi: 10.1016/j.carbpol.2024.122799. Epub 2024 Sep 24.

Abstract

To valorize the natural resource of corn silk as hepatoprotective food supplement, two fractions of polysaccharides (F-CSP-W/S) have been separated and purified from corn silk fermented by Lactobacillus plantarum. F-CSP-W was mainly composed of Glc, Gal, Ara, Xyl, Man (66.62: 11.83: 11.59: 7.89:1.48), traces of GlcN and GlcA; whereas F-CSP-S was mainly composed of Glc, Xyl, Gal, Ara, GlcA, GalA, Rha, Man (39.80: 18.26: 17.04: 11.87: 3.33: 3.18: 3.04: 2.77) and traces of GlcN. The detailed chemical structure analysis showed F-CSP-W/S were highly branched polysaccharides, which possessed the backbone of α-1 → 4-Glcp branched at α-1 → 3-Galp, with the solvated domains of arabinoxylan mainly consisted of β-1 → 4-Xyl, α-Ara and 4-O-Me-α-t-Glcp UA as side chains. F-CSP-S had a higher branch degree with pectin like side chain that contained partial methyl-esterificated α-1 → 4-GalUA and 1 → 2-Rhap covalently bound to arabinoxylan. Meanwhile, F-CSP-S displayed potent anti-oxidant activity in vitro. Both F-CSP-W and F-CSP-S ameliorated CCl-induced mouse acute liver injury through directly hepatoprotective effect as verified by the organ index, liver function, serum enzymatic activities and histological changes of liver.

摘要

为了充分利用玉米须作为保肝食品补充剂的天然资源,从植物乳杆菌发酵的玉米须中分离和纯化了两种多糖(F-CSP-W/S)。F-CSP-W 主要由 Glc、Gal、Ara、Xyl、Man(66.62:11.83:11.59:7.89:1.48)组成,含有微量的 GlcN 和 GlcA;而 F-CSP-S 主要由 Glc、Xyl、Gal、Ara、GlcA、GalA、Rha、Man(39.80:18.26:17.04:11.87:3.33:3.18:3.04:2.77)和微量的 GlcN 组成。详细的化学结构分析表明,F-CSP-W/S 是高度支化的多糖,其具有α-1→4-Glcp 为主链的支链,在α-1→3-Galp 处分支,其水合结构域主要由阿拉伯木聚糖组成,由β-1→4-Xyl、α-Ara 和 4-O-Me-α-t-Glcp UA 作为侧链。F-CSP-S 的支化程度较高,其侧链具有类似于果胶的结构,含有部分甲酯化的α-1→4-GalUA 和 1→2-Rhap,与阿拉伯木聚糖共价结合。同时,F-CSP-S 在体外表现出较强的抗氧化活性。F-CSP-W 和 F-CSP-S 通过直接的保肝作用改善 CCl 诱导的小鼠急性肝损伤,这一点通过器官指数、肝功能、血清酶活性和肝组织学变化得到了验证。

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