首页> 美国卫生研究院文献>Journal of Food Science and Technology >Preparation of bioactive peptides with high angiotensin converting enzyme inhibitory activity from winged bean Psophocarpus tetragonolobus (L.) DC. seed
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Preparation of bioactive peptides with high angiotensin converting enzyme inhibitory activity from winged bean Psophocarpus tetragonolobus (L.) DC. seed

机译:从四棱豆Psophocarpus tetragonolobus(L.)DC。种子制备具有高血管紧张素转化酶抑制活性的生物活性肽

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摘要

Winged bean [Psophocarpus tetragonolobus (L.) DC.] seed is a potential underexploited source of vegetable protein due to its high protein content. In the present work, undefatted and defatted winged bean seed hydrolysates, designated as UWBSH and DWBSH, respectively were produced separately by four proteolytic enzymes namely Flavourzyme, Alcalase, Bromelain, and Papain using pH-stat method in a batch reactor. Enzymatic hydrolysis was carried out over a period of 0.5 to 5 h. UWBSH and DWBSH produced were tested for their ACE inhibitory activity in relation to the hydrolysis time and degree of hydrolysis (DH). Maximum ACE inhibitory activity, both for UWBSH and DWBSH, were observed during 3 to 5 h of hydrolysis. Both, UWBSH (DH 91.84 %), and DWSBH (DH 18.72 %), produced by Papain at 5 h hydrolysis, exhibited exceptionally high ACE inhibitory activity with IC50 value 0.064 and 0.249 mg mL−1, respectively. Besides, papain-produced UWBSH and DWBSH were further fractionated into three fractions based on molecular weight (UWBSH-I, <10 kDa; UWBSH-II, <5 kDa; UWBSH-III, <2 kDa) and (DWBSH-I, <10 kDa; DWBSH-II, <5 kDa; DWBSH-III, <2 kDa). UWBSH-III revealed the highest ACE inhibitory activity (IC50 0.003 mg mL−1) compared with DWBSH-III (IC50 0.130 mg mL−1). The results of the present investigation revealed that winged bean seed hydrolysates can be explored as a potential source of ACE inhibitory peptides suggesting their uses for physiological benefits as well as for other functional food applications.
机译:四棱豆[Psophocarpus tetragonolobus(L.)DC。]种子由于其高蛋白含量而成为潜在的未充分利用的植物蛋白来源。在目前的工作中,分别通过四种蛋白水解酶,分别是Flavourzyme,Alcalase,Bromelain和Papain,使用pH-stat方法在分批反应器中分别生产未脱脂和脱脂的四棱豆种子水解产物,分别称为UWBSH和DWBSH。酶促水解进行0.5至5小时。测试了所产生的UWBSH和DWBSH相对于水解时间和水解度(DH)的ACE抑制活性。在水解3至5小时内,观察到对UWBSH和DWBSH都具有最大的ACE抑制活性。木瓜蛋白酶在5 h水解下产生的UWBSH(DH 91.84%)和DWSBH(DH 18.72%)均表现出极高的ACE抑制活性,IC50值分别为0.064和0.249 mg mL -1 。此外,将木瓜蛋白酶生产的UWBSH和DWBSH根据分子量(UWBSH-I,<10 kDa; UWBSH-II,<5 kDa; UWBSH-III,<2 kDa)和分子量(DWBSH-I,< 10 kDa; DWBSH-II,<5 kDa; DWBSH-III,<2 kDa)。与DWBSH-III(IC50 0.130 mg mL -1)相比,UWBSH-III具有最高的ACE抑制活性(IC50 0.003 mg mL -1 。本研究的结果表明,可以将四棱豆种子水解产物作为ACE抑制肽的潜在来源加以研究,表明它们可用于生理益处以及其他功能性食品。

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