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A new continuous system of enzymatic hydrolysis coupled with membrane separation for isolation of peptides with angiotensin I converting enzyme inhibitory capacity from defatted corn germ protein

机译:一种新的酶水解制酶水解系统,耦合膜分离,用于分离血管紧张素I转换酶抑制能力从脱脂玉米胚芽蛋白

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摘要

In this study, separation of peptides with Angiotensin I converting enzyme (ACE)-inhibitory capacity obtained from ultrasonically pretreated defatted corn germ protein (DCGP) by using a new continuous system of enzymatic hydrolysis coupled with membrane separation (EHC-MS) was investigated. Ultrasonic pretreatment was applied to enhance the enzymatic hydrolysis rate of DCGP, as proved in our previous study. The EHC-MS system was operated in two modes which included the batch system and continuous system with continuous water and substrate feeding and was compared with the EH-offline-MS system. The selection of the membrane was based on the hydrolysate fraction which had the highest activity for inhibition of ACE. The results showed that the 1-3 kDa fraction of DCGP hydrolysates had the lowest IC50 value (0.124 mg mL(-1)) for inhibition of ACE. The degree of conversion (%) of DCGP and output of peptides per unit of the enzyme were significantly (P < 0.05) increased by 55.3% and 55% in the EHC-MS batch process and 79% and 473% in the EHC-MS continuous operation compared to the EH-offline-MS system. The EHC-MS using continuous water and substrate feeding operation was noted to be the best in terms of a high degree of DCG protein conversion (75.68 +/- 1.34) and the output of peptides per unit of the enzyme (78.65 +/- 1.13). The results revealed that the EHC-MS method with constant water and substrate feeding could show a better application in peptide production in the food industry.
机译:在本研究中,研究了通过使用使用与膜分离(EHC-MS)结合的新的酶水解的新的连续的酶水解方法,从超声预处理的脱脂玉米生殖蛋白(DCGP)与血管紧张素I转换酶(ACE)抑制能力的分离。施用超声波预处理以增强DCGP的酶水解速率,如我们以前的研究证明。 EHC-MS系统以两种模式操作,其中包括具有连续水和基板的批量系统和连续系统,并与EH-OFFLINE-MS系统进行比较。膜的选择基于具有抑制ACE的最高活性的水解产物馏分。结果表明,1-3kDA水解产物的抑制αce的IC 50值(0.124mg(-1))。 DCGP的转化程度(%)和每单位酶的肽的输出显着(p <0.05)在EHC-MS分批过程中增加55.3%和55%,EHC-MS中的79%和473%与EH-OFFLINE-MS系统相比连续操作。使用连续水和基板进料操作的EHC-MS是在高度的DCG蛋白转化率(75.68 +/- 1.34)和每单位酶的产量(78.65 +/- 1.13 )。结果表明,具有恒定水和底物饲养的EHC-MS方法可以在食品工业中具有更好的肽生产应用。

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  • 来源
    《Food & Function》 |2020年第1期|共9页
  • 作者单位

    Jiangsu Univ Sch Food &

    Biol Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Food &

    Biol Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Sch Food &

    Biol Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

    Univ Gezira Dept Food Engn Fac Engn Wad Madani Sudan;

    CSIR OPRI Value Addit Div Kusi Ghana;

    Karakoram Int Univ Dept Agr &

    Food Technol Gilgit 15100 Pakistan;

    Jiangsu Univ Sch Food &

    Biol Engn 301 Xuefu Rd Zhenjiang 212013 Jiangsu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业;
  • 关键词

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