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化学修饰对大麦膳食纤维的化学成分和物理化学性质的影响。

Chemical composition and physicochemical properties of barley dietary fiber by chemical modification.

机构信息

Department of Food and Nutrition, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Republic of Korea.

出版信息

Int J Biol Macromol. 2013 Sep;60:360-5. doi: 10.1016/j.ijbiomac.2013.06.024. Epub 2013 Jun 28.

Abstract

Chemical modification of dietary fiber (DF), extracted from whole grain barley, was carried out to obtain cross-linked (CL) DF, carboxymethyl (CM) DF, and hydroxypropyl (HP) DF. The DF components, physicochemical properties, and subsequent influence on the in vitro digestibility of wheat starch gels were comparatively investigated. The redistribution of fiber components from chemically modified DF was observed. An increase in the total DF (TDF) content of CL- and HP-DF was observed, which was mainly due to an increase of insoluble DF. Carboxymethylation led to an appreciable increase of soluble DF (1.17-6.20%) but TDF contents slightly decreased. Chemical modification of barley DF led to increases in arabinose (7.1-11.5%) and xylose (10.7-17.5%), but glucose contents decreased (67.4-79.9%). The treatments, especially carboxymethylation, effectively (P<0.05) increased hydration properties (e.g. water solubility, swelling power, and water absorption index). Substitution of 5% wheat starch with CL-, and HP-DF led to decreased in vitro digestibility in comparison to the control starch. Our results suggest that chemical modification improve the DF characteristics of barley and to exploit its potential application as a functional ingredient in fiber-rich products.

摘要

对整粒大麦中提取的膳食纤维(DF)进行化学修饰,得到交联(CL)DF、羧甲基(CM)DF 和羟丙基(HP)DF。比较研究了 DF 成分、物理化学性质以及对小麦淀粉凝胶体外消化率的后续影响。观察到化学修饰 DF 中纤维成分的重新分布。CL-和 HP-DF 的总膳食纤维(TDF)含量增加,这主要是由于不溶性膳食纤维的增加。羧甲基化导致可溶性膳食纤维(1.17-6.20%)显著增加,但 TDF 含量略有下降。大麦 DF 的化学修饰导致阿拉伯糖(7.1-11.5%)和木糖(10.7-17.5%)增加,但葡萄糖含量减少(67.4-79.9%)。这些处理,特别是羧甲基化,有效地(P<0.05)增加了水合性质(例如水溶性、溶胀能力和水吸收指数)。与对照淀粉相比,用 CL-和 HP-DF 取代 5%的小麦淀粉会降低体外消化率。我们的结果表明,化学修饰可以改善大麦 DF 的特性,并开发其作为富含纤维产品中的功能性成分的潜在应用。

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