Bhaskar N, Mahendrakar N S
Department of Meat, Fish and Poultry Technology, Central Food Technological Research Institute, Mysore 570 020, Karnataka, India.
Bioresour Technol. 2008 Jul;99(10):4105-11. doi: 10.1016/j.biortech.2007.09.006. Epub 2007 Oct 22.
Protein hydrolysate was prepared from visceral waste proteins of an Indian freshwater major carp, Catla catla. Hydrolysis conditions (viz., time, temperature and enzyme to substrate level) for preparing protein hydrolysates from the fish visceral waste proteins using in situ pH of the visceral mass were optimized by response surface methodology (RSM) by employing a factorial design. The regression coefficient close to 1.0, observed during both experimental and validation runs, indicated the validity of prediction model. An enzyme to substrate level of 1.25 % (v/w), temperature of 55 degrees C and a hydrolysis time of 165 min were found to be the optimum conditions to obtain a higher degree of hydrolysis of >48% using multifect-neutral. The amino acid composition of the protein hydrolysate prepared using the optimized conditions revealed that the protein hydrolysate was similar to FAO/WHO reference protein. The chemical scores computed indicated methionine to be the most limiting amino acid. The protein hydrolysate has the potential for application as an ingredient in balanced fish diets.
蛋白质水解物是由印度淡水主要鲤鱼——印度鲃的内脏废弃物蛋白制备而成。采用析因设计,通过响应面法(RSM),利用内脏团原位pH值,对使用鱼内脏废弃物蛋白制备蛋白质水解物的水解条件(即时间、温度和酶与底物水平)进行了优化。在实验和验证过程中观察到的回归系数接近1.0,表明预测模型有效。发现使用多功能中性酶时,酶与底物水平为1.25%(v/w)、温度为55℃、水解时间为165分钟是获得大于48%的更高水解度的最佳条件。使用优化条件制备的蛋白质水解物的氨基酸组成表明,该蛋白质水解物与粮农组织/世界卫生组织参考蛋白质相似。计算得出的化学评分表明蛋氨酸是最具限制性的氨基酸。该蛋白质水解物有潜力作为平衡鱼饲料的一种成分应用。