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高压均质化改善特殊医学用途液体糖尿病配方食品的稳定性:酪蛋白-多糖复合物的结构特征

High-pressure homogenization to improve the stability of liquid diabetes formula food for special medical purposes: Structural characteristics of caseinpolysaccharide complexes.

作者信息

Zheng Xueting, Guo Zengwang, Zhang Jiayu, Cheng Tianfu, Yang Hong, Zhang Wentao, Zhou Linyi

机构信息

School of Food and Health, Beijing Technology and Business University, Beijing 100048, PR China.

College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.

出版信息

Food Chem X. 2024 Jul 25;23:101695. doi: 10.1016/j.fochx.2024.101695. eCollection 2024 Oct 30.

Abstract

The stability of diabetes formula food for special medical purposes (D-FSMP) was improved by high-pressure homogenization (HPH) at different homogenization pressures (up to 70 MPa) and number of passes (up to 6 times). The process at 60 MPa/4 times was the best. Casein had the highest surface hydrophobicity in this condition. The casein-polysaccharide complexes were endowed with the smallest size (transmission electron microscopy images). The complex particles exhibited nearly neutral wettability (the three-phase contact angle was 90.89°), lower interfacial tension, and the highest emulsifying activity index (EAI) and emulsifying stability index (ESI). The prepared D-FSMP system exhibited the narrowest particle size distribution range, the strongest interfacial deformation resistance and the best storage stability. Therefore, an appropriate intensity of HPH could enhance the stability of D-FSMP by improving the interfacial and emulsifying properties of casein-polysaccharide complexes. This study provides practical guidance on the productions of stable D-FSMP.

摘要

通过在不同均质压力(高达70MPa)和均质次数(高达6次)下进行高压均质(HPH),提高了特殊医学用途糖尿病配方食品(D-FSMP)的稳定性。60MPa/4次的工艺效果最佳。在此条件下,酪蛋白具有最高的表面疏水性。酪蛋白-多糖复合物具有最小的尺寸(透射电子显微镜图像)。复合颗粒表现出接近中性的润湿性(三相接触角为90.89°)、较低的界面张力以及最高的乳化活性指数(EAI)和乳化稳定性指数(ESI)。制备的D-FSMP体系表现出最窄的粒径分布范围、最强的抗界面变形能力和最佳的储存稳定性。因此,适当强度的HPH可通过改善酪蛋白-多糖复合物的界面和乳化性能来提高D-FSMP的稳定性。本研究为稳定D-FSMP的生产提供了实际指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da30/11342877/54e813ede97f/ga1.jpg

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