Abstract
1. Insulin secretion was studied in isolated islets of Langerhans obtained by collagenase digestion of rat pancreas. In addition to responding to glucose and mannose as do whole pancreas and pancreas slices in vitro, isolated rat islets also secrete insulin in response to xylitol, ribitol and ribose, but not to sorbitol, mannitol, arabitol, xylose or arabinose. 2. Xylitol and ribitol readily reduce NAD(+) when added to a preparation of ultrasonically treated islets. 3. Adrenaline (1mum) inhibits the effects of glucose and xylitol on insulin release. Mannoheptulose and 2-deoxy-glucose, however, inhibit the response to glucose but not that to xylitol. 4. The intracellular concentration of glucose 6-phosphate is increased when islets are incubated with glucose but not with xylitol, suggesting that xylitol does not promote insulin release by conversion into glucose 6-phosphate. 5. Theophylline (5mm) potentiates the effect of 20mm-glucose on insulin release from isolated rat islets of Langerhans, but has no effect on xylitol-mediated release. These results indicate that xylitol does not stimulate insulin release by alterations in the intracellular concentrations of cyclic AMP. 6. A possible role for the metabolism of hexoses via the pentose phosphate pathway in the stimulation of insulin release is discussed.
MeSH Terms
Alcohols/pharmacology
Animals
Arabinose/pharmacology
Glucose/pharmacology
Hexoses/pharmacology
In Vitro Techniques
Insulin/metabolism
Insulin Secretion
Islets of Langerhans/drug effects
Mannitol/pharmacology
Pentoses/pharmacology
Rats
Sorbitol/pharmacology
Theophylline/pharmacology
Xylose/pharmacology
Chemicals
Alcohols
Hexoses
Insulin
Pentoses
Mannitol
Sorbitol
Xylose
Arabinose
Theophylline
Glucose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Montague W
Taylor K W
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