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Production of Fish Protein Hydrolysates from Scyliorhinus canicula Discards with Antihypertensive and Antioxidant Activities by Enzymatic Hydrolysis and Mathematical Optimization Using Response Surface Methodology

机译:酶水解法和响应面法的数学优化方法从油菜中提取具有抗高血压和抗氧化活性的鱼蛋白水解物

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摘要

Fish discards are of major concern in new EU policies. Alternatives for the management of the new biomass that has to be landed is compulsory. The production of bioactive compounds from fish protein hydrolysates (FPH) has been explored in recent years. However, the viability of Scyliorhinus canicula discards, which might account for up to 90–100% of captures in mixed trawler, gillnet, and longline industrial fisheries, to produce FPH from the muscle with bioactivities has still not been studied in terms of the optimization of the experimental conditions to enhance its production. The effect of pH and temperature on the hydrolysis of the S. canicula muscle was mediated by three commercial proteases using response surface methodology. Temperatures of 64.6 °C and 60.8 °C and pHs of 9.40 and 8.90 were established as the best hydrolysis conditions for Alcalase and Esperase, respectively. Optimization of the best conditions for the maximization of antihypertensive and antioxidant activities was performed. Higher Angiotensin-converting enzyme (ACE) activity was found with Esperase. The pH optimum and temperature optimum for antioxidants were 55 °C/pH8.0 for ABTS/DPPH-Esperase, 63.1 °C/pH9.0 for DPPH-Alcalase, and 55 °C/pH9.0 for ABTS-Alcalase. No hydrolysis was detected when using Protamex.
机译:丢弃鱼是欧盟新政策中的主要关注点。必须对必须着陆的新生物质进行管理。近年来已经探索了由鱼蛋白水解物(FPH)生产生物活性化合物的方法。然而,Scyliorhinus canicula丢弃物的生存能力(可能占混合拖网渔船,刺网和延绳钓工业渔业中捕获量的90%至100%)可以通过具有生物活性的肌肉来生产FPH,但尚未进行优化研究。实验条件,以提高其产量。 pH和温度对双歧杆菌肌肉水解的影响是通过三种商用蛋白酶使用响应表面方法介导的。分别建立64.6°C和60.8°C的温度以及9.40和8.90的pH作为Alcalase和Esperase的最佳水解条件。进行了最佳条件的优化,以最大程度地降低高血压和抗氧化活性。发现Esperase具有更高的血管紧张素转化酶(ACE)活性。抗氧化剂的最适pH和最适温度对ABTS / DPPH-Esperase而言为55°C / pH8.0,对于DPPH-Alcalase而言为63.1°C / pH9.0,对于ABTS-Alcalase而言为55°C / pH9.0。使用Protamex时未检测到水解。

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