Oguzhan Berrin, Zhang Ying, Louchami Karim, Courtois Philippe, Portois Laurence, Chardigny Jean-Michel, Malaisse Willy J, Carpentier Yvon A, Sener Abdullah
Laboratories of Experimental Hormonology and Surgery, Brussels Free University, Brussels, Belgium.
Endocrine. 2006 Jun;29(3):457-66. doi: 10.1385/ENDO:29:3:457.
In order to gain information on the determinism of the perturbation of fuel homeostasis in situations characterized by a depletion in long-chain polyunsaturated omega3 fatty acids (omega3), the metabolic and hormonal status of omega3-depleted rats (second generation) was examined. When required, these rats were injected intravenously 120 min before sacrifice with a novel medium-chain triglyceride-fish oil emulsion able to provoke a rapid and sustained increase of the omega3 content in cell phospholipids. The measurement of plasma glucose, insulin, phospholipid, triglyceride, and unesterified fatty acid concentration indicated modest insulin resistance in the omega3-depleted rats. The plasma triglyceride and phospholipid concentrations were decreased in the omega3-depleted rats with abnormally low contribution of omega3 in both circulating and pancreatic islet lipids. The protein, insulin, and lipid content of the islets, as well as their intracellular and extracellular spaces, were little affected in the omega3-depleted rats. The metabolism of D-glucose in the islets of omega3-depleted rats was characterized by a lesser increase in D-[5-3H]glucose utilization and D-[U-14C]glucose oxidation in response to a given rise in hexose concentration and an abnormally low ratio between D-glucose oxidation and utilization. These abnormalities could be linked to an increased metabolism of endogenous fatty acids with resulting alteration of glucokinase kinetics. The release of insulin evoked by D-glucose, at a close-to-physiological concentration (8.3 mM), was increased in the omega3-depleted rats, this being considered as consistent with their insulin resistance. Relative to such a release, that evoked by a further rise in D-glucose concentration or by non-glucidic nutrients was abnormally high in omega3-depleted rats, and restored to a normal level after of the intravenous injection of the omega3-rich medium-chain triglyceride-fish oil emulsion. Because the latter procedure failed to correct the perturbation of D-glucose metabolism in the islets of omega3-depleted rats, it is proposed that the anomalies in the secretory behaviour of islets in terms of their response to an increase in hexose concentration or non-nutrient secretagogues is mainly attributable to alteration in K+ and Ca2+ handling, as indeed recently documented in separate experiments.
为了获取有关在长链多不饱和ω-3脂肪酸(ω-3)缺乏情况下燃料稳态扰动的决定因素的信息,研究了ω-3缺乏大鼠(第二代)的代谢和激素状态。必要时,在处死前120分钟给这些大鼠静脉注射一种新型中链甘油三酯-鱼油乳剂,该乳剂能够使细胞磷脂中的ω-3含量迅速且持续增加。血浆葡萄糖、胰岛素、磷脂、甘油三酯和未酯化脂肪酸浓度的测量表明,ω-3缺乏大鼠存在适度的胰岛素抵抗。ω-3缺乏大鼠的血浆甘油三酯和磷脂浓度降低,ω-3在循环和胰岛脂质中的贡献异常低。ω-3缺乏大鼠的胰岛蛋白质、胰岛素和脂质含量以及细胞内和细胞外空间受影响较小。ω-3缺乏大鼠胰岛中D-葡萄糖的代谢特征为,在己糖浓度给定升高时,D-[5-3H]葡萄糖利用和D-[U-14C]葡萄糖氧化的增加较小,且D-葡萄糖氧化与利用的比率异常低。这些异常可能与内源性脂肪酸代谢增加以及由此导致的葡萄糖激酶动力学改变有关。在接近生理浓度(8.3 mM)的D-葡萄糖刺激下,ω-3缺乏大鼠胰岛素的释放增加,这被认为与其胰岛素抵抗一致。相对于这种释放,在ω-3缺乏大鼠中,D-葡萄糖浓度进一步升高或非糖类营养物质刺激引起的胰岛素释放异常高,在静脉注射富含ω-3的中链甘油三酯-鱼油乳剂后恢复到正常水平。由于后一操作未能纠正ω-3缺乏大鼠胰岛中D-葡萄糖代谢的扰动,因此提出胰岛对己糖浓度增加或非营养性促分泌剂反应的分泌行为异常主要归因于K+和Ca2+处理的改变,正如最近在单独实验中所记录的那样。