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脉冲电场对胶束酪蛋白物理化学和结构性质的影响。

Effects of Pulsed Electric Field on the Physicochemical and Structural Properties of Micellar Casein.

作者信息

Taha Ahmed, Casanova Federico, Talaikis Martynas, Stankevič Voitech, Žurauskienė Nerija, Šimonis Povilas, Pakštas Vidas, Jurkūnas Marijus, Gomaa Mohamed A E, Stirkė Arūnas

机构信息

State Research Institute Center for Physical Sciences and Technology, Saulėtekio al. 3, LT-10257 Vilnius, Lithuania.

Food Production Engineering, National Food Institute, Technical University of Denmark, 2800 Lyngby, Denmark.

出版信息

Polymers (Basel). 2023 Aug 4;15(15):3311. doi: 10.3390/polym15153311.

Abstract

Pulsed electric field (PEF) as a green processing technology is drawing greater attention due to its eco-friendliness and potential to promote sustainable development goals. In this study, the effects of different electric field strengths (EFS, 0-30 kV/cm) on the structure and physicochemical features of casein micelles (CSMs) were investigated. It was found that the particle sizes of CSMs increased at low EFS (10 kV/cm) but decreased at high EFS (30 kV/cm). The absolute ζ-potential at 30 kV/cm increased from -26.6 (native CSMs) to -29.5 mV. Moreover, it was noticed that PEF treatment leads to changes in the surface hydrophobicity; it slightly increased at low EFS (10 kV/cm) but decreased at EFS > 10 kV/cm. PEF enhanced the protein solubility from 84.9 (native CSMs) to 87.1% (at 10 kV/cm). PEF at low EFS (10 kV/cm) intensified the emission fluorescence spectrum of CSMs, while higher EFS reduced the fluorescence intensity compared to native CSMs. Moreover, the analysis of the Amide Ι region showed that PEF-treated CSMs reduced the α-helix and increased the β-sheet content. Raman spectra confirmed that PEF treatment > 10 kV/cm buried tyrosine (Tyr) residues in a hydrophobic environment. It was also found that PEF treatment mainly induced changes in the disulfide linkages. In conclusion, PEF technology can be employed as an eco-friendly technology to change the structure and physiochemical properties of CSMs; this could improve their techno-functional properties.

摘要

脉冲电场(PEF)作为一种绿色加工技术,因其生态友好性和促进可持续发展目标的潜力而受到越来越多的关注。在本研究中,研究了不同电场强度(EFS,0 - 30 kV/cm)对酪蛋白胶束(CSMs)结构和物理化学特性的影响。结果发现,CSMs的粒径在低电场强度(10 kV/cm)下增加,但在高电场强度(30 kV/cm)下减小。30 kV/cm时的绝对ζ电位从 - 26.6(天然CSMs)增加到 - 29.5 mV。此外,还注意到PEF处理导致表面疏水性发生变化;在低电场强度(10 kV/cm)下略有增加,但在电场强度>10 kV/cm时降低。PEF将蛋白质溶解度从84.9(天然CSMs)提高到87.1%(在10 kV/cm时)。低电场强度(10 kV/cm)的PEF增强了CSMs的发射荧光光谱,而与天然CSMs相比,较高电场强度降低了荧光强度。此外,酰胺Ι区域的分析表明,经PEF处理的CSMs减少了α - 螺旋含量并增加了β - 折叠含量。拉曼光谱证实,电场强度>10 kV/cm的PEF处理将酪氨酸(Tyr)残基埋入疏水环境中。还发现PEF处理主要诱导二硫键的变化。总之,PEF技术可作为一种生态友好型技术来改变CSMs的结构和理化性质;这可以改善它们的技术功能特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32c5/10422647/e4b074a5a493/polymers-15-03311-g001.jpg

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