Ayim Ishmael, Ma Haile, Alenyorege Evans Adingba, Ali Zeshan, Donkor Prince Ofori
1School of Food and Biological Engineering, Jiangsu University, Zhenjiang, People's Republic of China.
Faculty of Applied Sciences, Kumasi Technical University, Kumasi, Ghana.
J Food Sci Technol. 2018 Mar;55(3):1037-1046. doi: 10.1007/s13197-017-3017-6. Epub 2018 Jan 16.
The effect of ultrasound pretreatment using Single Frequency Counter Current Ultrasound (SFCCU) on the enzymolysis of tea residue protein (TRP) extracted with sodium hydroxide was investigated. The concentration of TRP hydrolysate, enzymolysis kinetics and thermodynamic parameters after SFCCU pretreatment were determined and compared with traditional enzymolysis. The results indicated that both ultrasound assisted and traditional enzymolysis conformed to first-order kinetics within the limits of the studied parameters. Temperature and sonication had affirmative effect on the enzymolysis of TRP with temperature yielding greater impact. Michaelis constant ( ) in ultrasonic pretreated enzymolysis decreased by 32.7% over the traditional enzymolysis. The highest polypeptide concentration of 24.12 mg ml was obtained with the lowest energy requirement at improved conditions of 50 g L of TRP, alcalase concentration of 2000 U g, time of 10 min and temperature of 50 °C for the ultrasonic treated enzymolysis. The values of reaction rate constant () for TRP enzymolysis increased by 78, 40, 82 and 60% at 20, 30, 40 and 50 °C, respectively. The thermodynamic properties comprising activation energy (), change in enthalpy ) and entropy ) were reduced by ultrasound pretreatment whereas Gibbs free energy ) was increased.
研究了采用单频逆流超声(SFCCU)进行超声预处理对氢氧化钠提取茶渣蛋白(TRP)酶解的影响。测定了SFCCU预处理后TRP水解产物的浓度、酶解动力学和热力学参数,并与传统酶解进行比较。结果表明,在所研究的参数范围内,超声辅助酶解和传统酶解均符合一级动力学。温度和超声处理对TRP酶解有积极影响,其中温度的影响更大。超声预处理酶解中的米氏常数( )比传统酶解降低了32.7%。在50 g/L的TRP、2000 U/g的碱性蛋白酶浓度、10 min的时间和50℃的温度等优化条件下,超声处理酶解获得了最高多肽浓度24.12 mg/ml,且能量需求最低。在20、30、40和50℃时,TRP酶解的反应速率常数( )值分别提高了78%、40%、82%和60%。超声预处理降低了包括活化能( )、焓变( )和熵变( )在内的热力学性质,而吉布斯自由能( )增加。