Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.
Food Funct. 2014 Sep;5(9):2113-9. doi: 10.1039/c4fo00121d.
Mackerel protein hydrolysate (MPH) was purified through ultrafiltration membranes, and its effect and mechanism for anti-fatigue were investigated in mice. The result showed that MPH (<2.5 kDa) had effective free radical scavenging activities. Moreover, the MPH groups could significantly prolong exhaustion swimming time compared to the normal and other groups. The liver glycogen level was markedly increased by 33-35% and the BUN (16-17%), LA (14-19%) and MDA (16-31%) levels were decreased in the MPH group compared to that of the control group. In addition, MPH improved enzymatic antioxidant system by increasing the activities of SOD and GSH-Px. This study exhibited possible anti-fatigue mechanism of MPH, as follows: first, the MPH could supplement the concentration of blood glycogen and eliminate metabolites, which were related to fatigue; second, MPH with free radical scavenging ability could enhance the activities of antioxidant enzymes, which could alleviate fatigue.
鲭鱼蛋白水解物(MPH)通过超滤膜进行纯化,并在小鼠中研究其抗疲劳作用及其机制。结果表明,MPH(<2.5 kDa)具有有效的自由基清除活性。此外,与正常组和其他组相比,MPH 组可显著延长力竭游泳时间。MPH 组的肝糖原水平显著升高(增加 33-35%),BUN(16-17%)、LA(14-19%)和 MDA(16-31%)水平均低于对照组。此外,MPH 通过增加 SOD 和 GSH-Px 的活性来改善酶抗氧化系统。本研究展示了 MPH 的可能抗疲劳机制,如下:首先,MPH 可以补充血液糖原的浓度并消除与疲劳有关的代谢物;其次,具有清除自由基能力的 MPH 可以增强抗氧化酶的活性,从而缓解疲劳。