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结构演变、消化率以及孵化对大米谷蛋白纤维聚集物抑制淀粉消化的影响

Structural evolution, digestibility and inhibition on starch digestion of rice glutelin fibril aggregates as affected by incubation.

机构信息

School of Food and Biological Engineering, Changsha University of Science & Technology, Changsha 410114, Hunan Province, China.

Department of Food Science and Engineering, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Int J Biol Macromol. 2022 Aug 1;214:522-529. doi: 10.1016/j.ijbiomac.2022.06.140. Epub 2022 Jun 23.

Abstract

Structural evolution, digestibility and inhibition on starch digestion of rice glutelin fibril aggregates (RGFAs) as affected by incubation were investigated. Thioflavin T fluorescence intensity of the RGFAs, incubated for 4-day, reached the maximum values, which ranged from 845.00 ± 23.52 to 873.67 ± 50.30. Transmission electron microscopy (TEM) observed that the samples heated for 2 h (2 h fibril) were self-assembled from small glutelin aggregates and a few protofibrils into mature fibrils, the samples heated for 4-10 h (4-10 h fibril) were elongated into long, branched fibrils, and the longer fibrils of 15 h fibril sample dissociated into short fibrils after 4-day of incubation. Compared to rice glutelin, the RGFAs showed thermal stability and resistance to proteolysis. The fluorescence retention rate of 6 h fibril, after incubation for 4-day, was 8.62 ± 0.61 % after in vitro stomach and pancreas digestion, which was the highest among all of the samples. The RGFAs incubated for 1-day displayed much better inhibition effects on starch digestion. This was the first study to clarify the relationship between incubation and physicochemical/functional properties of protein fibrils, which could help understand the preservation of food protein fibrils and their application.

摘要

研究了孵化对大米谷蛋白原纤维聚集物(RGFAs)结构演变、消化率和对淀粉消化抑制的影响。孵育 4 天的 RGFAs 的硫黄素 T 荧光强度达到最大值,范围为 845.00±23.52 至 873.67±50.30。透射电子显微镜(TEM)观察到,加热 2 小时(2 h 原纤维)的样品由小谷蛋白聚集体和一些原纤维自组装成熟纤维,加热 4-10 小时(4-10 h 原纤维)的样品伸长成长而分支的纤维,而 15 h 原纤维样品的较长纤维在孵育 4 天后解离成短纤维。与大米谷蛋白相比,RGFAs 表现出热稳定性和抗蛋白水解性。孵育 4 天后,6 h 原纤维在体外胃和胰腺消化后的荧光保留率为 8.62±0.61%,在所有样品中最高。孵育 1 天的 RGFAs 对淀粉消化的抑制效果更好。这是首次阐明孵育与蛋白质纤维理化/功能特性之间关系的研究,有助于理解食品蛋白质纤维的保存及其应用。

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