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Effect of intracellular delivery of energy metabolites on intracellular Ca2+ in mouse islets of Langerhans
Authors:Dahlgren Gabriella M  Nolkrantz Kerstin  Kennedy Robert T
Institution:Department of Chemistry, University of Michigan, 930 N. University Ave., Ann Arbor, MI 48109-1055, United States.
Abstract:Regulation of glucose-induced oscillations in intracellular Ca2+ concentration (Ca2+]i) was investigated by using a novel technique, electroporation from an electrolyte-filled capillary, to deliver energy metabolites to the intracellular compartment of mouse islets. Intracellular application of ATP resulted in a nifedipine-sensitive increase in Ca2+]i, consistent with a KATP-channel dependent mechanism of Ca2+ influx. Ca2+]i in islets exposed to 10 mM glucose oscillated with a period of approximately 3 min, often superimposed with faster oscillations. Electroporation of ATP blocked all types of oscillations and elevated Ca2+]i while delivery of ADP had no effect on oscillations. Intracellular delivery of glucose-6-phosphate or fructose-1,6-bisphosphate tended to transform slow oscillations to fast oscillations. These results demonstrate that modulation of ATP concentrations and glycolytic flux are important in development of slow oscillations.
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