Differential patterns of glucose-induced electrical activity and intracellular calcium responses in single mouse and rat pancreatic islets

被引:66
作者
Antunes, CM
Salgado, AP
Rosário, LM
Santos, RM
机构
[1] Univ Coimbra, Fac Sci & Technol, Dept Biochem, P-3001401 Coimbra, Portugal
[2] Univ Coimbra, Fac Sci & Technol, Ctr Neurosci & Cell Biol, P-3001401 Coimbra, Portugal
关键词
D O I
10.2337/diabetes.49.12.2028
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Although isolated rat islets are widely used to study in vitro insulin secretion and the underlying metabolic and ionic processes, knowledge on the properties of glucose-induced electrical activity (GIEA), a key step in glucose-response coupling, has been gathered almost exclusively from microdissected mouse islets. Using a modified intracellular recording technique, we have now compared the patterns of GIEA in collagenase-isolated rat and mouse islets. Resting membrane potentials of rat and mouse beta -cells mere approximately -50 and -60 mV, respectively Both rat and mouse beta -cells displayed prompt membrane depolarizations in response to glucose. However, whereas the latter exhibited a bursting pattern consisting of alternating hyperpolarized and depolarized active phases, rat beta -cells fired action potentials from a nonoscillating membrane potential at all glucose concentrations (8.4-22.0 mmol/l). This was mirrored by changes in the intracellular Ca concentration ([Ca2+](i)), which was oscillatory in mouse and nonoscillatory in rat islets. Stimulated rat beta -cells were strongly hyperpolarized by diazoxide, an activator of ATP-dependent K+ channels. Glucose evoked dose-dependent depolarizations and [Ca2+](i) increases in both rat (EC50 5.9-6.9 mmol/l) and mouse islets (EC50 8.3-9.5 mmol/l), although it did not affect the burst plateau potential in the latter case. We conclude that there are important differences between beta -cells from both species with respect to early steps in the stimulus-secretion coupling cascade based on the following findings: 1) mouse beta -cells have a larger resting K+ conductance in 2 mmol/l glucose, 2) rat beta -cells lack the compensatory mechanism responsible for generating membrane potential oscillations and holding the depolarized plateau potential. in mouse beta -cells, and 3) the electrical and [Ca2+](i) dose-response curves in rat beta -cells are shifted toward lower glucose concentrations. Exploring the molecular basis of these differences may clarify several a priori assumptions on the electrophysiological properties of rat beta -cells, which could foster the development of new working models of pancreatic beta -cell function.
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页码:2028 / 2038
页数:11
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共 50 条
[1]   ATP-SENSITIVE K+ CHANNELS IN RAT PANCREATIC BETA-CELLS - MODULATION BY ATP AND MG-2+ IONS [J].
ASHCROFT, FM ;
KAKEI, M .
JOURNAL OF PHYSIOLOGY-LONDON, 1989, 416 :349-367
[2]   VOLTAGE NOISE MEASUREMENTS ACROSS THE PANCREATIC BETA-CELL MEMBRANE - CALCIUM-CHANNEL CHARACTERISTICS [J].
ATWATER, I ;
DAWSON, CM ;
EDDLESTONE, GT ;
ROJAS, E .
JOURNAL OF PHYSIOLOGY-LONDON, 1981, 314 (MAY) :195-212
[3]  
Atwater I, 1980, Horm Metab Res Suppl, VSuppl 10, P100
[4]  
Atwater I., 1989, MOL CELLULAR BIOL DI, V1, P49
[5]   Voltage dependent Na+ and Ca2+ currents in human pancreatic islet beta-cells: Evidence for roles in the generation of action potentials and insulin secretion [J].
Barnett, DW ;
Pressel, DM ;
Misler, S .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1995, 431 (02) :272-282
[6]   LACK OF GLUCOSE-INDUCED PRIMING OF INSULIN RELEASE IN THE PERFUSED MOUSE PANCREAS [J].
BERGLUND, O .
JOURNAL OF ENDOCRINOLOGY, 1987, 114 (02) :185-189
[7]   GLUCOSE-INDUCED AMPLITUDE REGULATION OF PULSATILE INSULIN-SECRETION FROM INDIVIDUAL PANCREATIC-ISLETS [J].
BERGSTEN, P ;
HELLMAN, B .
DIABETES, 1993, 42 (05) :670-674
[8]   GLUCOSE-INDUCED CYCLES OF INSULIN RELEASE CAN BE RESOLVED INTO DISTINCT PERIODS OF SECRETORY ACTIVITY [J].
BERGSTEN, P ;
HELLMAN, B .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1993, 192 (03) :1182-1188
[9]   OSCILLATORY INSULIN-SECRETION IN PERIFUSED ISOLATED RAT ISLETS [J].
BERGSTROM, RW ;
FUJIMOTO, WY ;
TELLER, DC ;
DEHAEN, C .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 257 (04) :E479-E485
[10]   Intercellular Ca2+ waves sustain coordinate insulin secretion in pig islets of Langerhans [J].
Bertuzzi, F ;
Zacchetti, D ;
Berra, C ;
Socci, C ;
Pozza, G ;
Pontiroli, AE ;
Grohovaz, F .
FEBS LETTERS, 1996, 379 (01) :21-25