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用不同脂肪酸处理的大西洋鲑(Salmo salar L.)肝细胞中18:3n-3的β-氧化作用

Beta-oxidation of 18:3n-3 in Atlantic salmon (Salmo salar L.) hepatocytes treated with different fatty acids.

作者信息

Torstensen Bente E, Stubhaug Ingunn

机构信息

National Institute of Nutrition and Seafood Research (NIFES), 5804 Bergen, Norway.

出版信息

Lipids. 2004 Feb;39(2):153-60. doi: 10.1007/s11745-004-1213-7.

Abstract

To study whether Atlantic salmon beta-oxidation was affected by dietary FA composition, an in vitro study with primary hepatocytes was undertaken. Isolated hepatocyte cultures were stimulated with either 16:0, 18:1n-9, 18:2n-6, 18:3n-3, 20:5n-3, or 22:6n-3 in triplicate for 24 h. In addition, a control was included where no FA stimulation was performed, also in triplicate. After stimulation, radiolabeled [1-14C] 18:3n-3 was added and the cells were incubated for 2 h at 20 degrees C. The cells were then harvested, and radioactivity was determined in the acid-soluble part of the cells and medium, i.e., the end products of the beta-oxidation pathway. Specific beta-oxidation activity was significantly higher in hepatocytes stimulated with 18:3n-3. Further, when taking into account the amount of radiolabeled [1-14C]18:3n-3 taken up by the cells--the relative amount of beta-oxidized [1-14C]18:3n-3 of the total FA taken up by the hepatocytes-no significant differences were found. Thus, the regulation of beta-oxidation activity in the primary Atlantic salmon hepatocytes seems to be at the level of FA uptake and transport into the cell. This in vitro study shows that the catabolism processes in salmon hepatocytes are affected by the FA available and probably already regulated at the level of FA uptake.

摘要

为研究大西洋鲑鱼的β-氧化是否受日粮脂肪酸(FA)组成的影响,开展了一项原代肝细胞的体外研究。分离的肝细胞培养物分别用16:0、18:1n-9、18:2n-6、18:3n-3、20:5n-3或22:6n-3进行刺激,一式三份,处理24小时。此外,设置了一个未进行脂肪酸刺激的对照组,同样一式三份。刺激后,加入放射性标记的[1-14C] 18:3n-3,并将细胞在20℃下孵育2小时。然后收获细胞,并测定细胞及培养基酸溶性部分的放射性,即β-氧化途径的终产物。用18:3n-3刺激的肝细胞中,特异性β-氧化活性显著更高。此外,考虑到细胞摄取的放射性标记的[1-14C]18:3n-3的量——即肝细胞摄取的总脂肪酸中β-氧化的[1-14C]18:3n-3的相对量——未发现显著差异。因此,原代大西洋鲑鱼肝细胞中β-氧化活性的调节似乎在脂肪酸摄取和转运进入细胞的水平。这项体外研究表明,鲑鱼肝细胞中的分解代谢过程受可用脂肪酸的影响,并且可能已经在脂肪酸摄取水平受到调节。

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