Venny Agustin, Masagus Muhammad Prima Putra, A. Husni
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引用次数: 1
摘要
摘要人工合成抗氧化剂的使用引起了人们的关注,促使天然抗氧化剂的使用不断增加,以替代天然抗氧化剂的应用日益广泛合成的。据报道,鱼蛋白水解物(FPH)具有强大的抗氧化性能,可以用来解决这一问题。本研究旨在利用蛇头鱼(头)的副产品,确定最佳水解条件,以获得具有抗氧化活性的FPH。在水解过程中测试了酶浓度(木瓜蛋白酶)和水解时间两个参数。通过测定溶解蛋白、水解度(DH)和抗氧化活性(DPPH、ABTS、FRAP)来评价最佳条件。最佳水解条件为酶浓度5%,酶解时间6 h,温度55℃,pH 7.0。DPPH、ABTS和FRAP抗氧化活性分别为50.70%、66.67%和1.35 M Tr/mg。基于抗氧化活性,蛇头鱼头具有作为天然抗氧化剂来源的潜力。
Impact of Enzymatic Hydrolysis on Antioxidant Activity of Snakehead Fish (Channa striata) Head Protein Hydrolysate
Highlight Research
Snakehead fish head possess high protein content and potential to be used as materials for protein hydrolysate
Snakehead fish head protein hydrolysis optimum condition were determined
Snakehead fish head hydrolysate protein antioxidant activity were analyzed
Snakehead fish head is potential to be used as materials for fish protein hydrolysate
Abstract
There is concern regarding the use of synthetic antioxidants which spurred the yearly increase of natural antioxidants to substitute synthetic ones. Fish protein hydrolysate (FPH), which has been reported to have potent antioxidant properties, could be utilized to solve this problem. This study aimed to utilize the by-product of snakehead fish (head) and determine the optimum hydrolysis conditions to obtain FPH with antioxidant activity. Two parameters were tested during the hydrolysis process: enzyme concentration (papain enzyme) and hydrolysis time. The optimum condition was evaluated by measuring dissolved protein, hydrolysis degree (DH), and antioxidant activity, including DPPH, ABTS, and FRAP. The optimal hydrolysis conditions were 5% enzyme concentration and 6 h of hydrolysis time at 55°C and pH 7.0. The DPPH, ABTS, and FRAP antioxidant activities were 50.70%, 66.67%, and 1.35 M Tr/mg, respectively. Based on the antioxidant activity, Snakehead fish head has the potential as a source of natural antioxidants.