Method for preparing gluten ACE inhibitory peptide through multi-mode ultrasonic wave strengthened enzymolysis
A gluten and ultrasonic technology, applied in the field of enzymatic hydrolysis to prepare gluten ACE inhibitory peptides
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Embodiment 1
[0030] Prepare 1.0 L of 4% (W / W) gluten protein suspension with 0.003 mol / L, and pretreat it with countercurrent sequential dual-frequency ultrasound with a combined frequency of 20-28 kHz. The sequence time was 5 s, 5 s; the ultrasonic power was 200 W / L, the initial temperature was 30°C, and the pretreatment time was 15 min. After ultrasonic pretreatment, alkaline protease was added at a ratio of 4560 U / g for enzymolysis. The temperature of the enzymolysis was 50°C, the pH was 8.5, and the enzymolysis was 30 minutes. After the enzymolysis was completed, the enzymolysis solution was boiled for 10 minutes enzyme, centrifuged at 10,000 g for 10 min, and the supernatant was collected to obtain the extract of the protein blood pressure-lowering peptide. ACE inhibitory activity was determined after 4-fold dilution.
[0031] After determination, the ACE inhibition rate of the diluent of the enzymatic hydrolyzate was 75.80%. Compared with control 1, the ACE inhibition rate increase...
Embodiment 2
[0033] The experimental process is the same as that of Example 1, the difference is that the frequency combination of the countercurrent sequential dual-frequency ultrasonic waves is 20-35 kHz. After determination, the ACE inhibition rate of gluten hydrolyzate diluent was 80.1%. Compared with control 1, the ACE inhibition rate increased by 25.4%, and compared with control examples 2 and 4, the ACE inhibition rate increased by 14.1% and 12.0%, respectively.
Embodiment 3
[0035] The experimental process is the same as that of Example 1, the difference is that the frequency combination of countercurrent sequential dual-frequency ultrasonic waves is 20-40 kHz. After determination, the ACE inhibition rate of gluten hydrolyzate diluent was 75.6%. Compared with control 1, the ACE inhibition rate increased by 18.3%, and compared with control examples 2 and 5, the ACE inhibition rate increased by 7.7% and 11.0%, respectively.
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