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优化燕麦β-葡聚糖的分子量以进行体外胆汁酸结合和发酵。

Optimizing the molecular weight of oat β-glucan for in vitro bile acid binding and fermentation.

机构信息

Department of Food Science and Human Nutrition, Iowa State University, Ames, Iowa 50011-1061, United States.

出版信息

J Agric Food Chem. 2011 Sep 28;59(18):10322-8. doi: 10.1021/jf202226u. Epub 2011 Aug 24.

Abstract

A previous study showed β-glucan with low molecular weight (MW, 1.56×10(5) g/mol) bound more bile acid and produced greater amounts of short-chain fatty acids (SCFA) than did β-glucan with high MW (Mn=6.87×10(5) g/mol). In the current study, β-glucan extracted from oat flour was fractionated into six different MW levels (high MW, 7.09×10(5); low level 1 (L1), 3.48×10(5); L2, 2.42×10(5); L3, 1.61×10(5); L4, 0.87×10(5); and L5, 0.46×10(5) g/mol) and evaluated to find the optimum MW affecting in vitro bile acid binding and fermentation. The β-glucan fractions with 2.42×10(5)-1.61×10(5) g/mol (L2 and L3) bound the greatest amounts of bile acid. After 24 h of fermentation, no differences were found in total SCFA formation among L1, L2, L3, and L4 fractions; however, the high MW and L5 MW fractions produced lower amounts of total SCFA. Thus, the optimum MW of β-glucan to affect both hypocholesterolemic and antitumorigenic in vitro effects was in the range of 2.42×10(5)-1.61×10(5) g/mol. This MW range also was the most water-soluble among the MWs evaluated.

摘要

先前的研究表明,低分子量(MW,1.56×10(5)g/mol)β-葡聚糖比高分子量(MW,Mn=6.87×10(5)g/mol)β-葡聚糖结合更多的胆汁酸并产生更多的短链脂肪酸(SCFA)。在本研究中,从燕麦粉中提取的β-葡聚糖被分为六个不同的 MW 水平(高分子量,7.09×10(5);低水平 1(L1),3.48×10(5);L2,2.42×10(5);L3,1.61×10(5);L4,0.87×10(5);和 L5,0.46×10(5)g/mol),并进行评估以找到影响体外胆汁酸结合和发酵的最佳 MW。MW 为 2.42×10(5)-1.61×10(5)g/mol(L2 和 L3)的β-葡聚糖片段结合了最多的胆汁酸。发酵 24 小时后,L1、L2、L3 和 L4 片段之间总 SCFA 的形成没有差异;然而,高分子量和 L5 MW 片段产生的总 SCFA 较少。因此,影响体内降胆固醇和抗肿瘤作用的β-葡聚糖的最佳 MW 范围在 2.42×10(5)-1.61×10(5)g/mol。该 MW 范围也是在所评估的 MW 中水溶性最好的。

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