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Antioxidant Activity of Bioactive Peptides Derived from the Hydrolysates of Jack Bean (Canavalia ensiformis (L.) DC.) Protein Isolate

机译:来自千斤顶豆水解产物的生物活性肽的抗氧化活性(Canavalia Ensiformis(L.)DC。)蛋白质分离物

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Jack bean (Canavalia ensiformis (L.) DC.) is commonly cultivated in Indonesia, but not so much available due to the presence of an anti-nutritional substance (hydrogen cyanide, tannin, and canavanine) and its low protein bioavailability. Considering that it is rich in protein, however, we investigated physiological functions of the protein hydrolysates after enzymatic hydrolysis of jack bean protein isolate. The objective of this study was to investigate the antioxidant properties of bioactive peptides from hydrolysis of jack bean protein isolate with pepsin and pancreatin enzyme. The jack bean protein isolate was subjected to digestion by pepsin and pancreatin enzyme separately with time course 15 min, 30 min, 45 min, 60 min, and 120 min. Biological active peptides presenting antioxidant activity was evaluated by determining the activity of free radical DPPH scavenging and its reducing power. The result showed that pancreatin enzyme was able to hydrolyse the jack bean protein more effective than pepsin as indicated by the higher degree of hydrolysis after pancreatin digestion. The highest degree of hydrolysis was achieved at 120 min digestion (28.08 %) with pancreatin. We remarkably found that the jack bean protein hydrolysate after pancreatin digestion presented higher DPPH scavenging activity rather than pepsin. In contrary with DPPH assay, jack bean protein hydrolysates after pepsin digestion exhibited higher reducing power than pancreatin, with the highest reducing power at 30 min digestion. This study suggested that the jack bean protein hydrolysates exhibited potential physiologically functional peptides with antioxidant properties, leading to a beneficial ingredient in the development for nutraceutical agent in promoting of health.
机译:Jack Bean(CanaviaLia Ensiformis(L.)DC。)通常在印度尼西亚栽培,但由于存在抗营养物质(氰化氢,单宁和Canavanine)及其低蛋白质生物利用度,而不是如此可用。然而,考虑到它富含蛋白质,我们研究了Jack Bean蛋白分离物的酶水解后蛋白质水解产物的生理功能。本研究的目的是研究生物活性肽的抗氧化性能与百草蛋白和胰岛素酶的千斤顶豆蛋白分离物的水解。将Jack Bean蛋白分离物分别与时间路线分别用时间路线,30分钟,45分钟,60分钟和120分钟分开消化。通过确定自由基DPPH清除的活性及其降低功率来评价呈抗氧化活性的生物活性肽。结果表明,如胰岛素消化后的较高程度的水解程度所示,胰蛋白酶能够更有效地水解千斤顶豆蛋白。在120分钟的消化(28.08%)与胰蛋白中获得最高水解程度。我们显着发现,在胰岛素消化后,杰豆蛋白水解产物呈现出更高的DPPH清除活性而不是百事可乐。与DPPH测定相反,百草蛋白消化后的杰豆蛋白质水解酸盐比胰蛋白表现出更高的减少功率,在30分钟的消化中具有最高的降低功率。本研究表明,千斤顶豆蛋白水解产物表现出潜在的生理功能性肽,其具有抗氧化剂性能,导致营养蛋白剂促进健康的开发中的有益成分。

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