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茶皂素对豌豆蛋白起泡性能的影响。

Effects of tea saponin on the foaming properties of pea protein.

机构信息

College of Food Science, South China Agricultural University, Guangzhou 510642, China.

Research Center for Green Development of Agriculture, South China Agricultural University, Guangzhou 510642, China.

出版信息

Food Funct. 2023 May 11;14(9):4339-4353. doi: 10.1039/d3fo00104k.

Abstract

Plant proteins are becoming increasingly important for foam formation as an alternative to animal proteins. Consumers, however, are unsatisfied with the foaming properties of pea protein isolates. Recent research on proteins and surfactants has primarily concentrated on chemically synthesized surfactants. In this study, foams were prepared by complexing pea protein isolates with a natural small molecule surfactant tea saponin. This study investigates the mechanisms responsible for the formation and stability of foams prepared from pea protein isolates (PPIs) complexed with tea saponins. Analyses of foaming performance were carried out by analyzing the morphology of foam, foaming properties, foam's rheological properties, and the microstructure of the pea protein-tea saponin complex system. Compared to the pea protein isolate alone, the pea protein-tea saponin complex significantly improved foaming capacity and foaming stability. As shown by light microscopy analysis, the size of the foam decreased and became more homogeneous, probably because of the altered aggregate state of the protein. In this study, natural surfactants and mixtures of plant proteins are studied in order to better understand their properties. The mixed system has excellent prospects for application in the industries related to foam.

摘要

植物蛋白作为动物蛋白的替代品,在泡沫形成方面变得越来越重要。然而,消费者对豌豆蛋白分离物的发泡性能并不满意。最近关于蛋白质和表面活性剂的研究主要集中在化学合成的表面活性剂上。在这项研究中,通过将豌豆蛋白分离物与天然小分子表面活性剂茶皂素复合来制备泡沫。本研究探讨了由豌豆蛋白分离物(PPI)与茶皂素复合形成的泡沫的形成和稳定性的机制。通过分析泡沫的形态、起泡性能、泡沫的流变性能以及豌豆蛋白-茶皂素复合体系的微观结构,对起泡性能进行了分析。与单独的豌豆蛋白分离物相比,豌豆蛋白-茶皂素复合物显著提高了起泡能力和泡沫稳定性。如光镜分析所示,泡沫的尺寸减小且变得更加均匀,这可能是由于蛋白质的聚集状态发生了变化。在这项研究中,研究了天然表面活性剂和植物蛋白混合物,以便更好地了解它们的性质。该混合体系在与泡沫相关的工业中有很好的应用前景。

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