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采用集成酶膜反应器和纳滤净化机制从 中生产高稳定性、降压和抗氧化肽。

Highly stable, antihypertensive, and antioxidative peptide production from by integrated enzymatic membrane reactor and nanofilter-purification mechanism.

机构信息

School of Food and Biological Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, Jiangsu 212013, People's Republic of China.

Key Laboratory for Physical Processing of Agricultural Products, Jiangsu University, Zhenjiang, China.

出版信息

Food Funct. 2022 Feb 21;13(4):2306-2322. doi: 10.1039/d1fo02779d.

Abstract

Enzymatic hydrolysis-offline and membrane separation (EH-offline MS), enzymatic membrane reactor (EMR) (various operational modes), and conjoined nanofilter-purification (desalination) were used to produce highly stable antihypertensive and antioxidative peptides from ultrasonic-slurry viscosity reduced sea cucumber () protein. The adoption of the optimum batch parameters by EMR-gradient diafiltration feeding (GDF), water feeding, and substrate feeding ensured a significant ( < 0.05) enhancement in protein conversion degree (PCD) by 60.39, 46.69, and 23.33%, respectively, over the conventional EH-offline MS. Also, the antihypertensive activity (ACE-inhibitory potency) of the peptides produced was in the order EMR-GDF > substrate feeding > water feeding > batch process > EH-offline MS. The EMR-GDF and nanofilter-purification produced highly digestible peptides with ACE-inhibition activities of 79.44% and 77.57% for gastric and gastrointestinal digests, respectively. Peptides with molecular weights of 1000-500 Da and 500 Da significantly contributed to the antihypertensive potency of desalinated peptides. simulated peptides showed a significant increase in the hydroxyl radical scavenging activity for gastric (77.27%) and gastrointestinal (85.32%) digests. The antioxidative stability of the produced peptides was least affected by high-temperature storage. The high arginine (Arg) and hydrophobic amino acid (HAA) content of the peptides resulted in their improved digestibility. Therefore, conjoined EMR-GDF and nanofilter-purification in the production of highly stable desalinated bioactive peptides for industrial applications could be a viable alternative.

摘要

采用酶解离线-膜分离(EH-离线 MS)、酶膜反应器(EMR)(各种操作模式)和联合纳滤-纯化(脱盐),从超声浆黏度降低海参()蛋白中生产高稳定性的降压和抗氧化肽。采用 EMR-梯度透析进料(GDF)、水进料和底物进料的最佳批处理参数,使蛋白质转化率(PCD)显著提高(<0.05),分别提高了 60.39%、46.69%和 23.33%。此外,所生产的肽的降压活性(ACE 抑制活性)的顺序为 EMR-GDF>底物进料>水进料>批处理过程>EH-离线 MS。EMR-GDF 和纳滤纯化生产的高度可消化肽具有 79.44%和 77.57%的 ACE 抑制活性,用于胃和胃肠道消化。分子量为 1000-500 Da 和 500 Da 的肽对脱盐肽的降压活性有显著贡献。模拟肽对胃(77.27%)和胃肠道(85.32%)消化物的羟基自由基清除活性有显著提高。所产生的肽的抗氧化稳定性受高温储存的影响最小。肽的精氨酸(Arg)和疏水性氨基酸(HAA)含量高,使其消化性得到改善。因此,在生产高稳定性脱盐生物活性肽方面,联合 EMR-GDF 和纳滤纯化可作为工业应用的可行替代方案。

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