Chan C, Lejeune J
Department of Anatomy and Physiology, Atlantic Veterinary College, University of Prince Edward Island, Charlottetown, Canada.
Can J Physiol Pharmacol. 1992 Nov;70(11):1518-22. doi: 10.1139/y92-216.
The direct effects of dexamethasone exposure on insulin secretion from islets of fa/fa rats and their lean littermates (Fa/?) were compared. After 72 h culture in 1 nM dexamethasone, glucose (27.5 mM)-stimulated insulin secretion over 90 min from islets of lean rats was significantly decreased compared with islets cultured without dexamethasone (12.9 +/- 1.4 vs. 5.7 +/- 1.0% of total islet content, p < 0.05). Higher doses of dexamethasone for 24-48 h culture produced similar effects. For islets of fa/fa rats, the minimum inhibitory concentration of dexamethasone was 10-fold higher, and islets required at least 48 h exposure for inhibitory effects to be observed. Dexamethasone also decreased the insulin response by islets to glybenclamide, indicating that dexamethasone effects were not specific to glucose transport or metabolism. The results suggest that islets of fa/fa rats may be less sensitive to direct inhibitory effects of glucocorticoids on glucose-stimulated insulin release than islets of lean animals.
比较了地塞米松暴露对fa/fa大鼠及其瘦型同窝仔鼠(Fa/?)胰岛胰岛素分泌的直接影响。在含有1 nM地塞米松的条件下培养72小时后,与未用地塞米松培养的胰岛相比,瘦鼠胰岛在90分钟内由葡萄糖(27.5 mM)刺激的胰岛素分泌显著减少(分别占胰岛总含量的12.9±1.4%和5.7±1.0%,p<0.05)。更高剂量的地塞米松用于24 - 48小时培养产生了类似的效果。对于fa/fa大鼠的胰岛,地塞米松的最小抑制浓度高10倍,并且胰岛需要至少48小时的暴露才能观察到抑制作用。地塞米松还降低了胰岛对格列本脲的胰岛素反应,表明地塞米松的作用并非特异性针对葡萄糖转运或代谢。结果表明,与瘦动物的胰岛相比,fa/fa大鼠的胰岛对糖皮质激素对葡萄糖刺激的胰岛素释放的直接抑制作用可能不太敏感。