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Optimization of Bromelain-Aided Production of Angiotensin I-Converting Enzyme Inhibitory Hydrolysates from Stone Fish Using Response Surface Methodology

机译:响应面法优化菠萝蛋白酶辅助石鱼中血管紧张素I转化酶抑制水解产物的生产

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摘要

The stone fish is an under-utilized sea cucumber with many nutritional and ethno-medicinal values. This study aimed to establish the conditions for its optimum hydrolysis with bromelain to generate angiotensin I-converting enzyme (ACE)-inhibitory hydrolysates. Response surface methodology (RSM) based on a central composite design was used to model and optimize the degree of hydrolysis (DH) and ACE-inhibitory activity. Process conditions including pH (4–7), temperature (40–70 °C), enzyme/substrate (E/S) ratio (0.5%–2%) and time (30–360 min) were used. A pH of 7.0, temperature of 40 °C, E/S ratio of 2% and time of 240 min were determined using a response surface model as the optimum levels to obtain the maximum ACE-inhibitory activity of 84.26% at 44.59% degree of hydrolysis. Hence, RSM can serve as an effective approach in the design of experiments to improve the antihypertensive effect of stone fish hydrolysates, which can thus be used as a value-added ingredient for various applications in the functional foods industries.
机译:石鱼是一种未充分利用的海参,具有许多营养和民族医学价值。这项研究旨在建立利用菠萝蛋白酶进行最佳水解以产生血管紧张素I转换酶(ACE)抑制性水解产物的条件。基于中央复合设计的响应面方法(RSM)用于建模和优化水解度(DH)和ACE抑制活性。工艺条件包括pH(4–7),温度(40–70°C),酶/底物(E / S)比率(0.5%–2%)和时间(30–360分钟)。使用响应表面模型作为最佳水平,确定pH值为7.0,温度为40°C,E / S比为2%和时间为240分钟,以在44.59%的度数下获得最大的ACE抑制活性为84.26%。水解。因此,RSM可以作为实验设计中改善石鱼水解产物抗高血压作用的有效方法,因此可以用作功能食品行业各种应用的增值成分。

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