College of Food Science, Northeast Agricultural University, Harbin, China.
College of Food Engineering, Harbin University of Commerce, Harbin, China.
Crit Rev Food Sci Nutr. 2024 Sep;64(26):9365-9381. doi: 10.1080/10408398.2023.2212302. Epub 2023 Jun 28.
Protein is one of the most important components of food which significantly contributes to the structure, functionality, and sensory properties which may affect consumer acceptability of processed products. Conventional thermal processing affects protein structure and induce undesirable degradation of food quality. This review provides an overview of emerging pretreatment and drying technologies (plasma treatment, ultrasound treatment, electrohydrodynamic, radio frequency, microwave, and superheated steam drying) in food processing by assessing protein structural changes to enhance functional and nutritional properties. In addition, mechanisms and principles of these modern technologies are described while challenges and opportunities for the development of these techniques in the drying process are also critically analyzed. Plasma discharges can lead to oxidative reactions and cross-linking of proteins that can change the structure of proteins. Microwave heating contributes to the occurrence of isopeptide or disulfide bonds which promotes α-helix and β-turn formation. These emerging technologies can be adopted to improve protein surface by exposing more hydrophobic groups which restrict water interaction. It is expected that these innovative processing technologies should become a preferred choice in the food industry for better food quality. Moreover, there are some limitations for industrial scale application of these emerging technologies that need to be addressed.
蛋白质是食物中最重要的成分之一,它对食品的结构、功能和感官特性有重要贡献,这些特性可能会影响消费者对加工产品的接受程度。传统的热加工会影响蛋白质的结构,并导致食品质量的不良降解。本综述通过评估蛋白质结构的变化来增强功能性和营养特性,提供了一种新兴的预处理和干燥技术(等离子体处理、超声处理、电动力学、射频、微波和过热蒸汽干燥)在食品加工中的概述。此外,还描述了这些现代技术的机制和原理,同时还批判性地分析了这些技术在干燥过程中的发展挑战和机遇。等离子体放电会导致蛋白质的氧化反应和交联,从而改变蛋白质的结构。微波加热有助于异肽键或二硫键的形成,从而促进α-螺旋和β-转角的形成。这些新兴技术可以用来改善蛋白质表面,暴露出更多的疏水性基团,从而限制水的相互作用。预计这些创新的加工技术将成为食品工业的首选,以提高食品质量。此外,这些新兴技术在工业规模应用方面还存在一些局限性,需要加以解决。