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Blood pressure and sugar regulating potentials of

机译:血压和糖调节潜力

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摘要

Several novel functional peptides have been successfully extracted from plant storage proteins. This study investigated the degree of hydrolysis, peptide yield, amino acid constituents, angiotensin converting enzyme (ACE), alpha amylase inhibitory and in vitro antioxidant activities of cashew (Anarcardium occidentale) nut proteins (CNP) hydrolysates (CNPHs). Cashew nut proteins (albumin and globulin) were hydrolysed using pancreatin, Alcalase and trypsin. The peptide yield and degree of hydrolysis (DH) of CNP by pancreatin (75.69 ± 0.84%; 37.39 ± 0.31) was significantly higher than those by Alcalase (61.67 ± 0.55%; 23.87 ± 0.23) and trypsin (43.33 ± 0.45%; 11 ± 0.15). The inhibition of ACE by albumin and globulin hydrolysates was concentration dependent. At 1.2 mg/mL, ACE-inhibitory activity of pancreatic cashew nut globulin (CNGH) hydrolysate (51.65 ± 1.2%) was significantly higher than those of Alcalase (34.603 ± 0.65%) and tryptic (29.92 ± 0.73%) CNGHs. Cashew nut albumin hydrolysate (CNAH) demonstrated concentration-dependent alpha-amylase inhibition (IC50 0.17 ± 0.02–0.41 ± 0.021 mg/mL). The order of inhibition was tryptic > Alcalase > pancreatic CNAHs. The pancreatic hydrolysates of both albumin and globulin fractions displayed the highest DPPH antioxidant activity, while pancreatic CNAH was the most potent superoxide anion scavenger. These findings therefore posit that cashew nut globulin and albumin hydrolysates are laden with useful bioactive peptides that may be further explored for regulation of blood pressure and sugar in hypertensive and diabetic in vivo models.
机译:已经从植物储存蛋白中成功地提取了几种新型功能肽。本研究研究了腰果(Anarcardium Occidentale)坚果蛋白(CNP)的水解,肽产率,氨基酸成分,血管紧张素转化酶(ACE),血管紧张素转化酶(ACE),α淀粉酶抑制和体外抗氧化活性(CNP)。使用胰岛素,alcalase和胰蛋白酶水解腰果蛋白(白蛋白和球蛋白)。 CNP的肽产率和水解度(DH)通过胰蛋白(75.69±0.84%; 37.39±0.31)显着高于Alcalase(61.67±0.55%; 23.87±0.23)和胰蛋白酶(43.33±0.45%; 11 ±0.15)。通过白蛋白和球蛋白水解产物的抑制浓度依赖性。在1.2mg / ml下,胰腺腰果球蛋白(CNGH)水解产物的ACE抑制活性(51.65±1.2%)显着高于阿尔卡尔酶(34.603±0.65%)和胰蛋白酶(29.92±0.73%)CNGHs。腰果白蛋白水解产物(CNAH)证明浓度依赖性α-淀粉酶抑制(IC50 0.17±0.02-0.41±0.021mg / ml)。抑制的顺序是胰蛋白酶> alcalase>胰腺CNAHs。白蛋白和球蛋白级分的胰腺水解产物显示出最高的DPPH抗氧化活性,而胰腺CNAH是最有效的超氧化物阴离子清除剂。因此,这些发现是,腰果球蛋白和白蛋白水解产物具有有用的生物活性肽,可进一步探索用于调节体内模型中高血压和糖尿病患者的血压和糖。

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