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Physiol Res ; 57(6): 935-945, 2008.
Article in English | MEDLINE | ID: mdl-18052676

ABSTRACT

Objective of this study was to characterize osmotically-induced insulin secretion in two tumor cell lines. We compared response of freshly isolated rat pancreatic islets and INS-1 and INS-1E tumor cell lines to high glucose, 30 % hypotonic medium and 20 % hypertonic medium. In Ca(2+)-containing medium glucose induced insulin release in all three cell types. Hypotonicity induced insulin secretion from islets and INS-1 cells but not from INS-1E cells, in which secretion was inhibited despite similar increase in cell volume in both cell types. GdCl(3) (100 micromol/l) did not affect insulin response from INS-1E cells to hypotonic challenge. Hypertonic medium inhibited glucose-induced insulin secretion from islets but not from tumor cells. Noradrenaline (1 micromol/l) inhibited glucose-induced but not swelling-induced insulin secretion from INS-1 cells. Surprisingly, perifusion with Ca(2+)-depleted medium showed distinct secretory response of INS-1E cells to hypotonicity while that of INS-1 cells was partially inhibited. Functioning glucose-induced insulin secretion is not sufficient prerequisite for hypotonicity-induced response in INS-1E cells suggesting that swelling-induced exocytosis is not essential step in the mechanism mediating glucose-induced insulin secretion. Both cell lines are resistant to inhibitory effect of hyperosmolarity on glucose-induced insulin secretion. Response of INS-1E cells to hypotonicity is inhibited by the presence of Ca(2+) in medium.


Subject(s)
Exocytosis , Glucose/metabolism , Insulin/metabolism , Islets of Langerhans/metabolism , Animals , Calcium/deficiency , Calcium/metabolism , Cell Line, Tumor , Cell Size , Gadolinium/pharmacology , Hypertonic Solutions , Hypotonic Solutions , Insulin Secretion , Insulinoma/metabolism , Islets of Langerhans/drug effects , Male , Norepinephrine/metabolism , Osmotic Pressure , Pancreatic Neoplasms/metabolism , Rats , Rats, Wistar
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