TY - JOUR
T1 - Arachidonic acid metabolites and α2-adrenoceptor-mediated glucagon secretion in rats
AU - Koyama, Kazunori
AU - Hirose, Hiroshi
AU - Maruyama, Hiroshi
AU - Itoh, Katsuhiko
AU - Kido, Koichi
AU - Saruta, Takao
PY - 1992/6
Y1 - 1992/6
N2 - Effects of phospholipase A2 inhibitor, cyclooxygenase inhibitor and lipoxygenase inhibitor on glucagon secretion induced by the α2-adrenergic agonist clonidine were studied in the isolated perfused rat pancreas. The phospholipase A2 inhibitor mepacrine at 25 and 50 μmol/l significantly inhibited glucagon secretion induced by 0.1 μmol/l clonidine (P < 0.01, respectively), whereas 5 μmol/l mepacrine did not affect clonidine-induced glucagon secretion. Also, both 100 μmol/l acetylsalicilic acid (cyclooxygenase inhibitor) and 100 μmol/l caffeic acid (lipoxygenase inhibitor) significantly inhibited clonidine-induced glucagon secretion (P < 0.01, respectively), whereas neither 10 μmol/l acetylsalicylic acid nor 10 μmol/l caffeic acid affected clonidine-induced glucagon secretion. None of the drugs at the tested concentrations affected insulin secretion at a glucose concentration of 5.5 mmol/l. These results suggest that not only cyclooxygenase metabolites but also lipoxygenase metabolites are involved in the stimulation of glucagon secretion mediated through the α2-adrenergic receptors in perfused rat pancreas.
AB - Effects of phospholipase A2 inhibitor, cyclooxygenase inhibitor and lipoxygenase inhibitor on glucagon secretion induced by the α2-adrenergic agonist clonidine were studied in the isolated perfused rat pancreas. The phospholipase A2 inhibitor mepacrine at 25 and 50 μmol/l significantly inhibited glucagon secretion induced by 0.1 μmol/l clonidine (P < 0.01, respectively), whereas 5 μmol/l mepacrine did not affect clonidine-induced glucagon secretion. Also, both 100 μmol/l acetylsalicilic acid (cyclooxygenase inhibitor) and 100 μmol/l caffeic acid (lipoxygenase inhibitor) significantly inhibited clonidine-induced glucagon secretion (P < 0.01, respectively), whereas neither 10 μmol/l acetylsalicylic acid nor 10 μmol/l caffeic acid affected clonidine-induced glucagon secretion. None of the drugs at the tested concentrations affected insulin secretion at a glucose concentration of 5.5 mmol/l. These results suggest that not only cyclooxygenase metabolites but also lipoxygenase metabolites are involved in the stimulation of glucagon secretion mediated through the α2-adrenergic receptors in perfused rat pancreas.
KW - Alpha adrenergic receptors
KW - Arachidonic acid
KW - Glucagon
KW - Insulin
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U2 - 10.1016/0168-8227(92)90122-8
DO - 10.1016/0168-8227(92)90122-8
M3 - Article
C2 - 1330464
AN - SCOPUS:0026722082
SN - 0168-8227
VL - 16
SP - 229
EP - 232
JO - Diabetes Research and Clinical Practice
JF - Diabetes Research and Clinical Practice
IS - 3
ER -