School of Food and Biological Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, Jiangsu 212013, China.
Laboratory Animal Research Center, Jiangsu University, 301 Xuefu Road, Zhenjiang, Jiangsu 212013, China.
Food Funct. 2021 Apr 26;12(8):3647-3656. doi: 10.1039/d1fo00427a.
Since not all proteins are suitable for preparing bioactive peptides by enzymatic degradation, the purpose of this study is to evaluate the necessity of walnut protein (WP) enzymolysis to exert its potential antihypertensive activity. Five proteases were used to hydrolyze WP to produce WP hydrolysate (WPH) enzymatically. The angiotensin-I-converting enzyme (ACE) inhibitory activity of WP and WPH before and after simulated digestion in vitro was measured, and the antihypertensive effect was evaluated in vivo. The results showed that after simulated digestion in vitro, the ACE inhibitory activity of WP digests (44.85%) was not significantly different from that of WPH digests (p > 0.05). In vivo experimental results showed that both WP and WPH had significant blood pressure lowering effects in the acute and long-term administrative experiments. The mechanism of its antihypertensive activities was regulating the balance of the renin-angiotensin-aldosterone system and the kallikrein-kinin system by inhibiting ACE activities in tissues and regulating the level of endothelium-derived vasoconstrictor factors and relaxing factors in serum. It seems unnecessary to carry out enzymatic hydrolysis to produce walnut peptides with antihypertensive activity.
由于并非所有蛋白质都适合通过酶解制备具有生物活性的肽,因此本研究旨在评估核桃蛋白(WP)酶解以发挥其潜在降压活性的必要性。使用五种蛋白酶对 WP 进行酶解以产生 WP 水解产物(WPH)。测量 WP 和 WPH 在体外模拟消化前后对血管紧张素转化酶(ACE)的抑制活性,并在体内进行降压效果评估。结果表明,体外模拟消化后,WP 消化物(44.85%)的 ACE 抑制活性与 WPH 消化物(p>0.05)无显著差异。体内实验结果表明,WP 和 WPH 在急性和长期给药实验中均具有显著的降压作用。其降压活性的机制是通过抑制组织中的 ACE 活性和调节血清中内皮衍生的缩血管因子和舒张因子的水平来调节肾素-血管紧张素-醛固酮系统和激肽释放酶-激肽系统的平衡。似乎没有必要进行酶解以产生具有降压活性的核桃肽。