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In vitro Angiotesin-1-converting enzyme α-amylase and α-glucosidase inhibitory and antioxidant activities of Luffa cylindrical (L.) M. Roem seed protein hydrolysate

机译:Luffa圆柱形(L.)Roem种子种子蛋白水解物的体外血管生成素-1转化酶α-淀粉酶和α-葡萄糖苷酶的抑制和抗氧化活性

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摘要

In recent times, researchers have explored food derived peptides to circumvent the side effects of synthetic drugs. This study therefore examined the amino acid constituents, in vitro antioxidant activities, angiotensin-1-converting enzyme (ACE), α-glucosidase and α-amylase inhibition kinetics of protein hydrolysate obtained from the seed of Luffa cylindrica. The peptide yield by pepsin (16.93 ± 0.28%) and trypsin (13.20 ± 1.02%) were significantly lower than that of Alcalase (34.04 ± 1.96%). Alcalase hydrolysate however displayed the highest ferric reducing antioxidant capacity (FRAC), 1,1-diphenyl-2-picrylhydrazyl (DPPH) and H2O2 scavenging activities (0.63%, 85.88% and 41.69% respectively), while the highest superoxide scavenging activity was shown by peptic hydrolysate (57.89%). The ACE inhibition by the hydrolysates with IC50 of 0.32–0.93 mg/mL, increased as the concentration of the peptic hydrolysate increased with the highest ACE-inhibitory activity (74.99 ± 0.43%) at 1.2 mg/mL of peptic hydrolysate. Tryptic and Alcalase hydrloysates exhibited a strong α-amylase inhibition having 27.96 ± 0.06% and 36.36 ± 0.71% inhibitory capacity respectively with IC50 of 1.02–3.31 mg/mL. Alcalase hydrolysates demonstrated the strongest inhibition (65.81 ± 1.95%), followed by tryptic hydrolysates (54.53 ± 0.52%) in a concentration-dependent inhibition of α-glucosidase (IC50, 0.48–0.80 mg/mL). Kinetic analysis showed that ACE-inhibition by different concentrations of Alcalase, pepsin and trypsin hydrolysates is uncompetitive, mixed-type and non-competitive respectively. α-Amylase was non-competitively inhibited while α-glucosidase was un-competitively inhibited by all the hydrolysates. The total amino acid concentration for Alcalase, trypsin and pepsin hydrolysates was 53.51g/100g, 75.40g/100g and 85.42g/100g of Luffa cylindrica seed protein hydrolysate respectively, with glutamate being the most concentrated essential amino acid in all the three hydrolysates. From these results, it can be deduced that Luffa cylindrica seed Alcalase and tryptic protein hydrolysates may play critical and indispensible role as bio-tools in diabetes and hypertension treatment.
机译:近年来,研究人员已经探索了食品衍生肽来规避合成药物的副作用。因此,这项研究检查了从丝瓜种子获得的蛋白质水解产物的氨基酸成分,体外抗氧化活性,血管紧张素1转化酶(ACE),α-葡萄糖苷酶和α-淀粉酶抑制动力学。胃蛋白酶(16.93±0.28%)和胰蛋白酶(13.20±1.02%)的肽产率明显低于Alcalase(34.04±1.96%)。然而,Alcalase水解产物显示出最高的三氧化二铁清除抗氧化剂能力(FRAC),1,1-二苯基-2-吡啶并肼基化合物(DPPH)和H2O2清除活性(分别为0.63%,85.88%和41.69%),而显示出最高的超氧化物清除活性由消化性水解产物(57.89%)。水解产物对ACE的抑制作用(IC50为0.32-0.93 mg / mL)随着消化液水解物浓度的增加而增加,在1.2 mg / mL消化液中具有最高的ACE抑制活性(74.99±0.43%)。胰蛋白酶和Alcalase的水合产物显示出很强的α-淀粉酶抑制作用,分别具有27.96±0.06%和36.36±0.71%的抑制能力,IC50为1.02-3.31 mg / mL。 Alcalase水解产物显示出最强的抑制作用(65.81±1.95%),其次是胰蛋白酶水解产物(54.53±0.52%),对α-葡萄糖苷酶具有浓度依赖性抑制作用(IC50,0.48–0.80 mg / mL)。动力学分析表明,不同浓度的Alcalase,胃蛋白酶和胰蛋白酶水解产物对ACE的抑制作用分别为竞争性,混合型和非竞争性。 α-淀粉酶被非竞争性抑制,而α-葡萄糖苷酶被所有水解产物非竞争性抑制。 Alcalase,胰蛋白酶和胃蛋白酶水解产物的总氨基酸浓度分别为Luffa cylindrica种子蛋白水解产物的53.51g / 100g,75.40g / 100g和85.42g / 100g,其中谷氨酸盐是所有三种水解产物中最浓缩的必需氨基酸。从这些结果可以推断,丝瓜种子Alcalase和胰蛋白酶蛋白水解物在糖尿病和高血压的治疗中可能起着至关重要的,必不可少的生物工具的作用。

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