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近年来热湿改性谷物淀粉的研究进展:结构、功能及其在淀粉质食品体系中的应用。

Recent advances in heat-moisture modified cereal starch: Structure, functionality and its applications in starchy food systems.

机构信息

College of Grain, Oil and Food Science, Henan University of Technology, No.100 Lianhua Street in Zhongyuan District, Zhengzhou, Henan 450001, China.

College of Grain, Oil and Food Science, Henan University of Technology, No.100 Lianhua Street in Zhongyuan District, Zhengzhou, Henan 450001, China.

出版信息

Food Chem. 2021 May 15;344:128700. doi: 10.1016/j.foodchem.2020.128700. Epub 2020 Nov 23.

Abstract

Cereals, one of the starch sources, have a tremendous and steady production worldwide. Starchy foods constitute the major part of daily calorie intake for humans. As a simple and green modification approach, heat-moisture treatment (HMT) could change the granular surface characteristics and size, crystalline and helical structure, as well as molecular organization of cereal starch. The changing degree is contingent on HMT parameters and botanical origin. Based on the hierarchical structure, this paper reviews functionalities of heat-moisture modified cereal starch (HMCS) reported in latest years. The functionality of HMCS could be affected by co-existing non-starch ingredients through non-covalent/covalent interactions, depolymerization or simply attachment/encapsulation. Besides, it summarizes the modulation of HMCS in dough rheology and final food products' quality. Selecting proper HMT conditions is crucial for achieving nutritious products with desirable sensory and storage quality. This review gives a systematic understanding about HMCS for the better utilization in food industry.

摘要

谷物是淀粉的主要来源之一,在全球范围内有着巨大而稳定的产量。淀粉类食物构成了人类日常卡路里摄入量的主要部分。作为一种简单而绿色的改性方法,湿热处理(HMT)可以改变谷物淀粉的颗粒表面特性和大小、结晶和螺旋结构以及分子组织。这种变化程度取决于 HMT 参数和植物来源。基于层次结构,本文综述了近年来报道的湿热改性谷物淀粉(HMCS)的功能。HMCS 的功能可能会受到非淀粉成分的影响,这些非淀粉成分通过非共价/共价相互作用、解聚或简单的附着/包封来影响 HMCS 的功能。此外,本文还总结了 HMCS 在面团流变学和最终食品质量中的调制作用。选择合适的 HMT 条件对于获得具有理想感官和储存质量的营养产品至关重要。本文综述为更好地在食品工业中利用 HMCS 提供了系统的认识。

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