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大豆分离蛋白/羧甲基纤维素钠复合物体系稳定的高内相比Pickering乳液:基于非共价相互作用的稳定机制

Soy protein isolate/carboxymethyl cellulose sodium complexes system stabilized high internal phase Pickering emulsions: Stabilization mechanism based on noncovalent interaction.

作者信息

Sun Fuwei, Cheng Tianfu, Ren Shuanghe, Yang Bing, Liu Jun, Huang Zhaoxian, Guo Zengwang, Wang Zhongjiang

机构信息

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

Shandong Yuwang Industrial Co., Ltd, Dezhou, Shandong 251299, China.

出版信息

Int J Biol Macromol. 2024 Jan;256(Pt 1):128381. doi: 10.1016/j.ijbiomac.2023.128381. Epub 2023 Nov 23.

DOI:10.1016/j.ijbiomac.2023.128381
PMID:38000596
Abstract

The interactions between carboxymethyl cellulose sodium and proteins can regulate the interfacial and rheological properties of HIPEs, which plays a leading role in the stabilities of HIPEs. This article prepared various ratios of soluble soy protein isolate/carboxymethyl cellulose sodium (SPI/CMC) complexes in different proportions and examined the impact of various ratios of complexes on the structure and interface properties of complexes systems. Additionally, it explored the co-emulsification mechanism of HIPEs using SPI and CMC. At appropriate ratios of SPI/CMC, SPI and CMC mainly combine through non covalent binding and form complexes with smaller particle sizes and stronger electrostatic repulsion. The interfacial properties indicated that adding appropriate CMC increased the pliability and reduced the interfacial tension, while also enhancing the wettability of SPI/CMC complexes. At the ratio of 2:1, the SPI/CMC complexes-stabilized HIPPEs exhibited smaller oil droplets size, tighter droplet packing, and thicker interfacial film through the bridging of droplets and the generation of stronger gel-like network structures to prevent the coalescence/flocculation of droplets. These results suggested that the appropriate ratios of SPI/CMC can improve the physical stability of HIPEs by changing the structure and interface characteristics of the SPI/CMC complexes. This work provided theoretical support for stable HIPEs formed with protein-polysaccharide complexes.

摘要

羧甲基纤维素钠与蛋白质之间的相互作用可以调节高内相乳液(HIPEs)的界面和流变性质,这在HIPEs的稳定性中起主导作用。本文制备了不同比例的可溶性大豆分离蛋白/羧甲基纤维素钠(SPI/CMC)复合物,并研究了不同比例复合物对复合体系结构和界面性质的影响。此外,还探讨了使用SPI和CMC的HIPEs的共乳化机制。在适当的SPI/CMC比例下,SPI和CMC主要通过非共价结合结合在一起,形成粒径较小且静电排斥力较强的复合物。界面性质表明,添加适量的CMC可提高柔韧性并降低界面张力,同时还增强了SPI/CMC复合物的润湿性。在2:1的比例下,通过液滴的桥连和形成更强的凝胶状网络结构以防止液滴聚并/絮凝,SPI/CMC复合物稳定的HIPPEs表现出更小的油滴尺寸、更紧密的液滴堆积和更厚的界面膜。这些结果表明,适当比例的SPI/CMC可以通过改变SPI/CMC复合物的结构和界面特性来提高HIPEs的物理稳定性。这项工作为用蛋白质-多糖复合物形成稳定的HIPEs提供了理论支持。

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