Balkan B, Steffens A B, Strubbe J H, Bruggink J E
Department of Animal Physiology, University of Groningen, Netherlands.
Diabetes. 1990 Jun;39(6):702-6. doi: 10.2337/diab.39.6.702.
The effects of physiological doses of sulfated cholecystokinin-8 (CCK-8) on insulin secretion were investigated in unrestrained unanesthetized rats. The routes of administration were intravenous or intraportal infusion. Intravenous infusion (0.33-5.0 micrograms CCK-8.kg-1.20 min-1) resulted in a biphasic response pattern consisting of a fast 1st-min rise in plasma insulin concentration and a slower second phase that lasted throughout the infusion. The first phase showed the same amplitude with all amounts of CCK-8 administered in this study, whereas the second phase exhibited dose dependency. Blood glucose levels were lowered during all infusions of CCK-8, although the second phase of insulin release was absent with the lowest dose. These results suggest a strong stimulatory effect of CCK-8 on the pancreatic beta-cells, probably by changing the set point for glucose. The described effects of intravenous administration of CCK-8 cannot be produced when the infusion is given into the portal vein. Only very high concentrations of CCK-8 (15 micrograms.kg-1.20 min-1) produced a small increase in plasma insulin levels, indicating a strong CCK-8-eliminating mechanism in the liver. These results indicate that 1) CCK-8 evokes biphasic insulin release and a concomitant drop in glucose levels, and 2) CCK-8 acting on the beta-cell in vivo is not of intestinal origin but is probably released by the pancreatic vagal branch.
在未麻醉的自由活动大鼠中研究了生理剂量的硫酸化胆囊收缩素-8(CCK-8)对胰岛素分泌的影响。给药途径为静脉内或门静脉输注。静脉输注(0.33 - 5.0微克CCK-8·kg⁻¹·20分钟⁻¹)导致双相反应模式,包括血浆胰岛素浓度在第1分钟快速升高以及在整个输注过程中持续的较慢的第二阶段。第一阶段在本研究中给予的所有剂量的CCK-8下显示相同的幅度,而第二阶段表现出剂量依赖性。在所有CCK-8输注期间血糖水平均降低,尽管最低剂量时不存在胰岛素释放的第二阶段。这些结果表明CCK-8对胰腺β细胞有强烈的刺激作用,可能是通过改变葡萄糖的设定点。当将CCK-8输注到门静脉中时,不会产生静脉内给药所描述的效果。只有非常高浓度的CCK-8(15微克·kg⁻¹·20分钟⁻¹)会使血浆胰岛素水平略有升高,表明肝脏中存在强大的CCK-8消除机制。这些结果表明:1)CCK-8引起双相胰岛素释放并伴随血糖水平下降;2)体内作用于β细胞的CCK-8并非来自肠道,而是可能由胰腺迷走神经分支释放。