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Preparation of Oligopeptide Mixture With a High Fischer Ratio from Egg White Proteins

机译:用蛋白蛋白质的高离费物比制备寡肽混合物

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Oligopeptide with a high Fischer ratio by protease hydrolysis from egg white was prepared. The optimal substrate concentration 5.5% and denatured time 15min were determined by nitrogen recovery ratio (NR) testing. Alcalase and enzymesII were selected to hydrolyze egg white protein. The performance of ion exchange resin was chosen when flow rate of the hydrolysate was 8vol/hr. The NR of the hydrolysate was 84.01% and the desalinization ratio was 81.73% after passing ion exchange resin. Activated carbon adsorption chromatography was used to remove free AAA and the result of UV-scanning indicated that active carbon was efficient to absorb AAA. The composition analyzed results showed that the Fischer ratio of hydrolysate was 20.46 and the content of free amino acid was 8.04%. The G-25 gel filration chromatography was used to determine the molecular weight (MW) of hydrolysate and the results showed that the MW distribution of the hydrolysate with a high Fischer ratio was consecutive and it ranged from 300 to 600.
机译:制备来自蛋白酶水解的寡肽与蛋白蛋白酶水解的寡肽。通过氮恢复比(NR)测试测定最佳底物浓度5.5%和变性时间15min。选择alcalase和苯甲酶以水解蛋白蛋白质。选择离子交换树脂的性能,当水解酸盐的流速为8Vol / Hr时,选择了离子交换树脂。水解酸盐的NR为84.01%,通过离子交换树脂后,脱盐率为81.73%。活性炭吸附色谱法用于除去游离AAA,UV扫描结果表明活性炭是有效的吸收AAA。该组合物分析结果表明,水解产物的费斯比例为20.46,游离氨基酸的含量为8.04%。 G-25凝胶过度色谱法用于确定水解产物的分子量(Mw),结果表明,液体分解酸盐的Mw分布连续,其范围为300至600。

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