Glibenclamide treatment recruits β-cell subpopulation into elevated and sustained basal insulin synthetic activity

被引:27
作者
Ling, ZD [1 ]
Wang, QD [1 ]
Stangé, G [1 ]
In't Veld, P [1 ]
Pipeleers, D [1 ]
机构
[1] Free Univ Brussels, Vrije Univ Brussel, Ctr Diabet Res, B-1090 Brussels, Belgium
关键词
D O I
10.2337/diabetes.55.01.06.db05-0820
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Use of sulfonylureas in diabetes treatment is based on their insulin-releasing effect on pancreatic beta-cells. Prolonged action is known to degranulate beta-cells, but functional consequences have not been examined at the cellular level. This study investigates influences of in vivo (48-h) and in vitro (24-h) glibenclamide treatment on the functional state of the beta-cell population. Both conditions decreased cellular insulin content by >50% and caused an elevated basal insulin biosynthetic activity that was maintained for at least 24 h after drug removal. Glibenclamide stimulation of basal insulin synthesis was not achieved after a 2-h exposure; it required a calcium-dependent translational activity and involved an increase in the percent activated beta-cells (50% after glibenclamide pretreatment vs. 8% in control celts). The glibenclamide-activated beta-cell subpopulation corresponded to the degranulated beta-cell subpopulation that was isolated by fluorescence-activated cell sorter on the basis of lower cellular sideward scatter. Glibenclamide pretreatment did not alter cellular Fates of glucose oxidation but sensitized beta-cells to glucose-induced changes in metabolic redox and insulin synthesis and release. In conclusion, chronic exposure to glibenclamide results in degranulation of a subpopulation of beta-cells, which maintain an elevated protein and insulin synthetic activity irrespective of the presence of the drug and of glucose. Our study demonstrates that the in situ beta-cell population also exhibits a functional heterogeneity that can vary with drug treatment. Glibenclamide induces degranulated beta-cells with a sustained elevated basal activity that might increase the risk for hypoglycemic episodes.
引用
收藏
页码:78 / 85
页数:8
相关论文
共 36 条
[1]   Alterations of insulin secretion from mouse islets treated with sulphonylureas:: perturbations of Ca2+ regulation prevail over changes in insulin content [J].
Anello, M ;
Gilon, P ;
Henquin, JC .
BRITISH JOURNAL OF PHARMACOLOGY, 1999, 127 (08) :1883-1891
[2]   ACTIVELY SYNTHESIZING BETA-CELLS SECRETE PREFERENTIALLY AFTER GLUCOSE STIMULATION [J].
BOSCO, D ;
MEDA, P .
ENDOCRINOLOGY, 1991, 129 (06) :3157-3166
[3]   PKC-dependent stimulation of exocytosis by sulfonylureas in pancreatic beta cells [J].
Eliasson, L ;
Renstrom, E ;
Ammala, C ;
Berggren, PO ;
Bertorello, AM ;
Bokvist, K ;
Chibalin, A ;
Deeney, JT ;
Flatt, PR ;
Gabel, J ;
Gromada, J ;
Larsson, O ;
Lindstrom, P ;
Rhodes, CJ ;
Rorsman, P .
SCIENCE, 1996, 271 (5250) :813-815
[4]  
Finkbeiner S, 1998, J NEUROBIOL, V37, P171, DOI 10.1002/(SICI)1097-4695(199810)37:1<171::AID-NEU13>3.0.CO
[5]  
2-H
[6]   BIOSYNTHESIS OF PROINSULIN AND INSULIN IN NEWBORN RAT PANCREAS - INTERACTION OF GLUCOSE, CYCLIC-AMP, SOMATOSTATIN, AND SULFONYLUREAS ON [H-3] LEUCINE INCORPORATION INTO IMMUNOREACTIVE INSULIN [J].
GARCIA, SD ;
JARROUSSE, C ;
ROSSELIN, G .
JOURNAL OF CLINICAL INVESTIGATION, 1976, 57 (01) :230-243
[7]   Inhibition of protein synthesis sequentially impairs distinct steps of stimulus-secretion coupling in pancreatic β cells [J].
Garcia-Barrado, MJ ;
Ravier, MA ;
Rolland, JF ;
Gilon, P ;
Nenquin, M ;
Henquin, JC .
ENDOCRINOLOGY, 2001, 142 (01) :299-307
[8]   The insulin secretory granule is the major site of KATP channels of the endocrine pancreas [J].
Geng, XH ;
Li, LH ;
Watkins, S ;
Robbins, PD ;
Drain, P .
DIABETES, 2003, 52 (03) :767-776
[9]   INTERACTION OF SULFONYLUREAS WITH PANCREATIC BETA-CELLS - A STUDY WITH GLYBURIDE [J].
GORUS, FK ;
SCHUIT, FC ;
VELD, PAI ;
GEPTS, W ;
PIPELEERS, DG .
DIABETES, 1988, 37 (08) :1090-1095
[10]   HETEROGENEITY IN GLUCOSE SENSITIVITY AMONG PANCREATIC BETA-CELLS IS CORRELATED TO DIFFERENCES IN GLUCOSE PHOSPHORYLATION RATHER THAN GLUCOSE-TRANSPORT [J].
HEIMBERG, H ;
DEVOS, A ;
VANDERCAMMEN, A ;
VANSCHAFTINGEN, E ;
PIPELEERS, D ;
SCHUIT, F .
EMBO JOURNAL, 1993, 12 (07) :2873-2879