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Production of antihypertensive and antioxidant activities by enzymatic hydrolysis of protein concentrates recovered by ultrafiltration from cuttlefish processing wastewaters

机译:通过从乌贼加工废水中进行超滤回收的蛋白质浓缩物的酶促水解产生抗高血压和抗氧化活性

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This work focuses on the production of antihypertensive and antioxidant activities using enzymatic hydrolysis of protein concentrates recovered by ultrafiltration of different wastewaters from the industrial processing of cuttlefish (1llex argentinus). The effluents were produced in the processes of thawing (E1), softening (E2), boiling (E3) and gelation (E4). Our results showed that membranes with cut-off at 100,30 and 10 kDa were an effective resource to protein concentration of E2 and E3 but limited for El and E4. In addition, E2 and E3 retentates led to remarkable antihypertensive and antioxidant activities, further improved by enzymatic hydrolysis. Also sequential ultrafiltration revealed the enrichment of these protein concentrates in peptides with high angiotensin-converting enzyme (ACE)-inhibitory activity. Thereby, UF-fractionation followed by proteolysis of protein concentrates from cuttlefish wastewaters offers new opportunities for the development of bioactive hydrolysates with application in the food industry. In addition, this approach contributes to an improved depuration of industrial wastewaters, reducing the treatment costs and leading to a decrease in its contaminating effect.
机译:这项工作的重点是利用酶浓缩蛋白浓缩物的酶促水解来生产降压和抗氧化活性,这些浓缩物是通过对乌贼(1llex argentinus)的工业加工中的不同废水进行超滤而回收的。废水通过解冻(E1),软化(E2),煮沸(E3)和凝胶化(E4)的过程产生。我们的结果表明,截留分子量为100,30和10 kDa的膜是E2和E3蛋白质浓度的有效资源,但El和E4受到限制。此外,E2和E3截留物还具有显着的降压和抗氧化活性,可通过酶促水解进一步改善。顺序超滤还显示这些蛋白质浓缩物富集具有高血管紧张素转化酶(ACE)抑制活性的肽。因此,超滤分离和墨鱼废水中蛋白质浓缩物的蛋白水解为生物活性水解物的开发提供了新的机会,并将其应用于食品工业。另外,该方法有助于改善工业废水的净化,降低处理成本并降低其污染效果。

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