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胰腺胰岛中86Rb外流的调节:营养性促分泌剂的双重作用。

Regulation of 86Rb outflow from pancreatic islets: the dual effect of nutrient secretagogues.

作者信息

Carpinelli A R, Malaisse W J

出版信息

J Physiol. 1981 Jun;315:143-56. doi: 10.1113/jphysiol.1981.sp013738.

Abstract
  1. An increase in the concentration of extracellular D-glucose from zero to 1.7 mM or more (up to 16.7 mM) causes a rapid and sustained decrease in 86Rb fractional outflow rate (FOR) from prelabelled and perifused pancreatic rat islets. The 86Rb FOR also decreases when the concentration of D-glucose is raised from 1.7 mM or more (up to 5.6 mM) to higher values not exceeding 8.3 mM. 2. However, when the glucose concentration is raised from 8.3 mM (or 11.1 mM) to higher values, no decrease in 86Rb FOR is observed and, instead, a transient increase in 86Rb FOR now takes place. 3. Such a dual effect on 86Rb FOR is also observed when alpha-ketoisocaproic acid is used as the nutrient secretagogue or when the latter keto acid is used in combination with D-glucose. 4. The transient increase in 86Rb FOR evoked by D-glucose in islets already exposed to alpha-ketoisocaproate is abolished by mannoheptulose, suggesting that it depends on the integrity of glucose metabolism. 5. The transient increase in 86Rb FOR evoked, under suitable experimental conditions, by D-glucose of alpha-ketoisocaproate is abolished in the absence of extracellular Ca2+ and mimicked by theophylline and tolbutamide, suggesting that it is attributable to an increase in cytosolic Ca2+ concentration. The latter view is supported by the fact that the increase in 86Rb FOR coincides with an increase in 45Ca FOR, provided that Ca2+ is not removed from the extracellular medium. 6. It is concluded that, in contrast to the situation found when the concentration of the nutrient secretagogue is increased from a non-insulinotropic to a higher value, the stimulation of Ca2+ entry into islet cells and the subsequent increase in insulin secretion evoked by D-glucose or alpha-ketoisocaproate when the concentration of these nutrients is increased from intermediate (8.3-10.0 mM) to higher values is not attributable to a decrease in K+ conductance.
摘要
  1. 细胞外D - 葡萄糖浓度从零增加到1.7 mM或更高(直至16.7 mM)会导致预先标记并进行灌流的大鼠胰腺胰岛中86Rb分数流出率(FOR)迅速且持续下降。当D - 葡萄糖浓度从1.7 mM或更高(直至5.6 mM)升高到不超过8.3 mM的更高值时,86Rb FOR也会下降。2. 然而,当葡萄糖浓度从8.3 mM(或11.1 mM)升高到更高值时,未观察到86Rb FOR下降,相反,此时86Rb FOR会出现短暂增加。3. 当使用α - 酮异己酸作为营养性促分泌剂或当后者与D - 葡萄糖联合使用时,也观察到对86Rb FOR的这种双重作用。4. 在已经暴露于α - 酮异己酸盐的胰岛中,甘露庚酮糖消除了由D - 葡萄糖引起的86Rb FOR的短暂增加,这表明它依赖于葡萄糖代谢的完整性。5. 在合适的实验条件下,由α - 酮异己酸盐的D - 葡萄糖引起的86Rb FOR的短暂增加在细胞外Ca2 +不存在时被消除,并被茶碱和甲苯磺丁脲模拟,这表明它归因于细胞质Ca2 +浓度的增加。如果不从细胞外培养基中去除Ca2 +,86Rb FOR的增加与45Ca FOR的增加同时发生,这一事实支持了后一种观点。6. 得出的结论是,与营养性促分泌剂浓度从非促胰岛素分泌值增加到更高值时的情况相反,当这些营养物质的浓度从中等(8.3 - 10.0 mM)增加到更高值时,D - 葡萄糖或α - 酮异己酸引起的Ca2 +进入胰岛细胞的刺激以及随后胰岛素分泌的增加并非归因于K +电导的降低。

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