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Effects of three products from Antarctic krill on the nitrogen balance, growth, and antioxidation status of rats

机译:南极磷虾对大鼠氮平衡,生长和抗氧化状况的影响

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A few studies conducted over the past few decades have demonstrated the health benefits of a diet rich in marine products, but limited studies have investigated the effects of different krill products on the nitrogen balance and their potential health benefits. In our study, after a 14‐day acclimation period, 50 female Sprague–Dawley rats were randomly assigned to five groups, each of which was fed a different diet, for 28?days. We then evaluated the effect of krill protein complex (KPC), krill powder, and defatted krill powder on the nitrogen balance, growth, and antioxidant activity through analyses of MDA, CAT, GSH‐Px, and T‐SOD. An in vivo analysis suggested that the nitrogen retention rate, protein digestibility, and bioutilization of krill products were equal to those of casein. Moreover, the KPC diet resulted in the highest nitrogen intake and retention among the groups, and the biological value and net protein utilization obtained with KPC were higher than those obtained with defatted krill powder, which was consistent with the weight gains observed for these two groups. The hematological test also showed that KPC contributed to the production of functional proteins in the body. The antioxidant activity analysis indicated that higher GSH‐Px and T‐SOD activities were obtained with krill products and KPC, respectively, compared with casein. The results from this study suggested that krill proteins could promote growth and improve the antioxidant status of an organism. Although further studies on the safety of krill products for human consumption are needed, this work provides insights into the use of krill proteins as a potential substitute for other proteins and restructured foods.
机译:在过去几十年中进行了一些研究表明,富含海洋产品的饮食的健康益处,但有限的研究已经调查了不同磷虾产品对氮气平衡的影响及其潜在的健康益处。在我们的研究中,经过14天的适应期,50例女性Sprague-Dawley大鼠随机分配到五组,每组喂养不同的饮食,28个?天。然后,我们通过分析MDA,CAT,GSH-PX和T-SOD,评估KRILL蛋白复合物(KPC),磷虾粉和脱脂磷虾粉对氮气平衡,生长和抗氧化活性的影响。体内分析表明,磷虾产物的氮保留率,蛋白质消化率和磷酸盐产品的比例等于酪蛋白的氮素。此外,KPC饮食导致组中的最高氮气摄入量和保留,并且通过KPC获得的生物值和净蛋白质利用率高于用缺陷的磷虾粉获得的培养物利用,这与对这两组的重量衰减一致。血液学测试还显示KPC导致体内官能蛋白的产生。抗氧化活性分析表明,与酪蛋白相比,分别用磷虾产品和KPC获得较高的GSH-PX和T-SOD活性。本研究的结果表明,磷虾蛋白可以促进生长和改善生物体的抗氧化状态。虽然需要进一步研究人类消费的磷虾产品的安全性,但这项工作提供了对磷虾蛋白作为其他蛋白质和重组食品的潜在替代品的见解。

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