Louchami Karim, Zhang Ying, Carpentier Yvon A, Chardigny Jean-Michel, Malaisse Willy J, Herchuelz André, Sener Abdullah
Laboratory of Experimental Hormonology, Brussels Free University, 808 Route de Lennik, 1070, Brussels, Belgium.
Endocrine. 2007 Oct;32(2):148-54. doi: 10.1007/s12020-007-9029-7. Epub 2007 Nov 27.
A number of metabolic, ionic and secretory variables were recently found to be affected in pancreatic islets obtained from second generation rats depleted in long-chain polyunsaturated omega 3 fatty acids (omega 3 rats). The present study further documents three sets of anomalies in such islets. First, after 90 min exposure to D-glucose (8.3 mM), the release of insulin from perifused islets, prelabelled with 45Ca, is lower in omega 3 rats than in control animals, despite comparable 45Ca fractional outflow rate. Second, over 15 min exposure to carbamylcholine (0.1 mM), in the presence of D: -glucose, the cytosolic concentration of Ca2+ is increased to a greater relative extent in dispersed islet cells from omega 3 rats, as compared to control animals. This coincides with a greater relative increase in insulin output from perifused islets during the second phase of the secretory response to the cholinergic agent. Last, the increase provoked by ouabain (1.0 mM) in cytosolic Ca2+ concentration, 45Ca fractional outflow rate and insulin release are all delayed in the omega 3 rats. Taking into account the decreased activity of Na+, K+-ATPase in the islets of omega 3 rats, these findings are interpreted as reflecting an impaired priming of insulin-producing cells when first exposed for 105 min to a physiological postprandial concentration of D-glucose.
最近发现,从长链多不饱和ω-3脂肪酸缺乏的第二代大鼠(ω-3大鼠)获取的胰岛中,一些代谢、离子和分泌变量受到了影响。本研究进一步记录了此类胰岛中的三组异常情况。第一,在用45Ca预标记的情况下,经90分钟暴露于D-葡萄糖(8.3 mM)后,ω-3大鼠的灌流胰岛释放的胰岛素比对照动物少,尽管45Ca的分数流出率相当。第二,在存在D-葡萄糖的情况下,经15分钟暴露于氨甲酰胆碱(0.1 mM),与对照动物相比,ω-3大鼠的分散胰岛细胞中Ca2+的胞质浓度相对增加幅度更大。这与胆碱能药物分泌反应第二阶段灌流胰岛胰岛素输出的相对增加幅度更大相吻合。最后,哇巴因(1.0 mM)引起的ω-3大鼠胞质Ca2+浓度、45Ca分数流出率和胰岛素释放的增加均延迟。考虑到ω-3大鼠胰岛中Na+,K+-ATP酶活性降低,这些发现被解释为反映了胰岛素产生细胞在首次暴露于生理餐后浓度的D-葡萄糖105分钟时引发受损。