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Acute oxidative stress modulates secretion and repetitive Ca2+ spiking in rat exocrine pancreas

Authors :
Tomio Kanno
G E Mann
K. Doolabh
Izumi Shibuya
Koichi Niwa
J.H. Sweiry
Yoshiaki Habara
N. Asada
Source :
Biochimica et biophysica acta. 1454(1)
Publication Year :
1999

Abstract

The effects of the oxidant tert-butylhydroperoxide (t-buOOH) on carbachol-stimulated pancreatic secretion in the vascularly perfused rat pancreas have been studied in parallel with [Ca2+]i signalling and amylase output in perifused rat pancreatic acinar cells. Perfusion of the pancreas with t-buOOH (0.1–1 mM) caused a rapid and irreversible inhibition of carbachol-stimulated (3×10−7 M) amylase and fluid secretion. Pre-perfusion of the pancreas with vitamin C and dithiothreitol or a cocktail of GSH and GSH-precursor amino acids provided only marginal protection against the deleterious effects of t-buOOH, even though GSH levels were elevated significantly. In perifused pancreatic acini, repetitive [Ca2+]i spikes evoked by carbachol (3×10−7 M) were sustained for 40 min. t-buOOH (1 mM) acutely increased the amplitude and duration of Ca2+ spikes, then attenuated Ca2+ spiking and subsequently caused a marked and sustained rise in [Ca2+]i. t-buOOH-induced alterations in carbachol-stimulated [Ca2+]i signalling and amylase release in perifused pancreatic acini were prevented by vitamin C. Although vitamin C restored impaired Ca2+ signalling and maintained amylase output in pancreatic acini, it seems likely that oxidative stress inhibits fluid secretion irreversibly in the intact pancreas, resulting in a loss of amylase output. Thus, perturbations in [Ca2+]i signalling may not fully explain the secretory block caused by oxidative stress in acute pancreatitis.

Details

ISSN :
00063002
Volume :
1454
Issue :
1
Database :
OpenAIRE
Journal :
Biochimica et biophysica acta
Accession number :
edsair.doi.dedup.....07ed240b63978b22d51ca359a4920e90