Hu Xiao-Qian, Xu Jie, Xue Yong, Li Zhao-Jie, Wang Jing-Feng, Wang Jia-Hui, Xue Chang-Hu, Wang Yu-Ming
College of Food Science and Engineering, Ocean University of China, Qingdao, China.
Biosci Biotechnol Biochem. 2012;76(12):2214-8. doi: 10.1271/bbb.120495. Epub 2012 Dec 7.
Several studies had indicated that the whole body of sea cucumber had beneficial effects on lipid metabolism. However, little information has been known on the individual functions of its bioactive components, and this study was undertaken to compare the different effects on improving lipid metabolism. The rats were assigned to seven groups: control, whole sea cucumber, saponins, polysaccharides, collagen peptides, dregs and non-saponin residues. After 28 d of feeding, the serum total cholesterol, triglyceride, high-density lipoprotein-cholesterol, and hepatic lipid concentrations were examined. The results indicated that a dietary saponin supplement significantly suppressed adipose accumulation, and reduced serum and hepatic lipids. Saponin proved to be more effective than the other isolated components, so is considered to be the main lipid-lowering component in sea cucumber. The possible mechanism by which saponins improved lipid metabolism was also investigated. The saponins of sea cucumber suppressed and delayed TG and TC absorption which could be related to the pancreatic lipase inhibiting effect of saponins. This may be an important mechanism to explain its lipid-lowering effect on rats.
多项研究表明,海参整体对脂质代谢具有有益作用。然而,关于其生物活性成分的个体功能却知之甚少,因此开展本研究以比较对改善脂质代谢的不同作用。将大鼠分为七组:对照组、海参整体组、皂苷组、多糖组、胶原肽组、残渣组和非皂苷残渣组。喂食28天后,检测血清总胆固醇、甘油三酯、高密度脂蛋白胆固醇和肝脏脂质浓度。结果表明,膳食补充皂苷可显著抑制脂肪堆积,并降低血清和肝脏脂质。皂苷被证明比其他分离成分更有效,因此被认为是海参中的主要降脂成分。还研究了皂苷改善脂质代谢的可能机制。海参皂苷抑制并延迟甘油三酯和总胆固醇的吸收,这可能与皂苷对胰脂肪酶的抑制作用有关。这可能是解释其对大鼠降脂作用的一个重要机制。