Cao Hongwei, Wang Xiaoxue, Liu Jing, Sun Zhu, Yu Zhiquan, Battino Maurizio, El-Seedi Hesham, Guan Xiao
School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P. R. China.
National Grain Industry (Urban Grain and Oil Security) Technology Innovation Center, Shanghai, P. R. China.
Compr Rev Food Sci Food Saf. 2023 May;22(3):2465-2487. doi: 10.1111/1541-4337.13154. Epub 2023 Apr 11.
Microwave (MW) and enzyme catalysis are two emerging processing tools in the field of food industry. Recently, MW has been widely utilized as a novel type of green and safe heating energy. However, the effect of MW irradiation on enzyme activity is not described clearly. The intrinsic mechanisms behind enzyme activation and inactivation remain obscure. To apply better MW to the field of enzyme catalysis, it is essential to gain insights into the mechanism of MW action on enzyme activity. This review summarizes the changes in various enzyme activity during food processing, especially under MW irradiation. The intrinsic mechanism of thermal and nonthermal effects of MW irradiation was analyzed from the perspective of enzyme reaction kinetics and spatial structure. MW irradiation temperature is a vital parameter affecting the catalytic activity of enzymes. Activation of the enzyme activity is achieved even at high MW power when the enzyme is operating at its optimum temperature. However, when the temperature exceeds the optimum temperature, the enzyme activity is inhibited. In addition to MW dielectric heating effect, nonthermal MW effects also alter the microenvironment of reactive system. Taken together, enzyme activity is influenced by both thermal and nonthermal MW effects.
微波(MW)和酶催化是食品工业领域中两种新兴的加工工具。近年来,微波已被广泛用作一种新型的绿色安全加热能源。然而,微波辐射对酶活性的影响尚未得到清晰描述。酶激活和失活背后的内在机制仍然不明。为了更好地将微波应用于酶催化领域,深入了解微波对酶活性的作用机制至关重要。本综述总结了食品加工过程中各种酶活性的变化,特别是在微波辐射下的变化。从酶反应动力学和空间结构的角度分析了微波辐射的热效应和非热效应的内在机制。微波辐射温度是影响酶催化活性的一个重要参数。当酶在其最适温度下运行时,即使在高微波功率下也能实现酶活性的激活。然而,当温度超过最适温度时,酶活性受到抑制。除了微波介电加热效应外,微波非热效应也会改变反应体系的微环境。综上所述,酶活性受微波热效应和非热效应的共同影响。