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复合蛋白酶制备牡蛎(Ostrea rivularis)水解物的抗疲劳和抗氧化活性。

Anti-fatigue and anti-oxidant activities of oyster (Ostrea rivularis) hydrolysate prepared by compound protease.

机构信息

College of Food Science, South China Agricultural University, Guangzhou 510642, People's Republic of China.

出版信息

Food Funct. 2018 Dec 13;9(12):6577-6585. doi: 10.1039/c8fo01879k.

Abstract

Oyster, which is rich in protein and widely used as a marine traditional Chinese medicine, was believed to have good curative effects in health care and on chronic diseases. This study was designed to evaluate the anti-fatigue and anti-oxidant effects of oyster hydrolysate. Oyster meat (OM) was hydrolyzed with a complex protease, and oyster hydrolysate (OH) was separated by a 6 kDa ultrafiltration membrane into two fractions, OH-I (<6 kDa) and OH-II (≥6 kDa). The anti-fatigue effects of OM, OH, OH-I and OH-II groups were first investigated, and then the antioxidant activities of OH-I and OH-II were further analyzed. Anti-fatigue experimental results showed that OH-I displayed the strongest activity among the four groups. Compared to the control group, OH-I significantly prolonged swimming time (67.79%), increased the content of muscle glycogen (45.65%) and liver glycogen (49.01%), and reduced the content of blood urea nitrogen (BUN) (18.44%) (P < 0.05). Meanwhile, OH-I showed excellent chemical and cellular antioxidant activities, especially when the concentration increased; its antioxidant activity was significantly better than that of OH-II (P < 0.05). Results of an amino acid analysis showed that OH-I was rich in branched-chain amino acids (10.84 g per 100 g), Glu (8.63 g per 100 g), Tau (1.68 g per 100 g), Asp (5.02 g per 100 g) and Arg (3.61 g per 100 g), which were expected to contribute to its antioxidant and anti-fatigue activities.

摘要

牡蛎富含蛋白质,作为海洋传统中药被广泛应用,被认为在保健和慢性病治疗方面有良好的疗效。本研究旨在评估牡蛎水解物的抗疲劳和抗氧化作用。采用复合蛋白酶对牡蛎肉(OM)进行水解,然后通过 6 kDa 超滤膜将牡蛎水解物(OH)分离成两个部分,OH-I(<6 kDa)和 OH-II(≥6 kDa)。首先研究了 OM、OH、OH-I 和 OH-II 组的抗疲劳作用,然后进一步分析了 OH-I 和 OH-II 的抗氧化活性。抗疲劳实验结果表明,OH-I 在四组中表现出最强的活性。与对照组相比,OH-I 显著延长了游泳时间(67.79%),增加了肌肉糖原(45.65%)和肝糖原(49.01%)的含量,降低了血尿素氮(BUN)的含量(18.44%)(P<0.05)。同时,OH-I 表现出优异的化学和细胞抗氧化活性,尤其是当浓度增加时;其抗氧化活性明显优于 OH-II(P<0.05)。氨基酸分析结果表明,OH-I 富含支链氨基酸(10.84 g/100 g)、Glu(8.63 g/100 g)、Tau(1.68 g/100 g)、Asp(5.02 g/100 g)和 Arg(3.61 g/100 g),这有望有助于其抗氧化和抗疲劳活性。

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