Ethanol toxicity in pancreatic acinar cells: Mediation by nonoxidative fatty acid metabolites
- 9 July 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (29) , 10738-10743
- https://doi.org/10.1073/pnas.0403431101
Abstract
Ethanol causes pancreatic damage by an unknown mechanism. Previously, we demonstrated that a sustained rise of the cytosolic Ca 2+ concentration ([Ca 2+ ] i ) causes pancreatic acinar cell injury. Here we have investigated the effects of ethanol and its metabolites on Ca 2+ signaling in pancreatic acinar cells. Most cells exposed to ethanol (up to 850 mM) showed little or no increase in [Ca 2+ ] i (and never at concentrations 2+ ] i elevation and following ACh removal there was a normal and rapid recovery to a low resting level. The oxidative metabolite acetaldehyde (up to 5 mM) had no effect, whereas the nonoxidative unsaturated metabolite palmitoleic acid ethyl ester (10–100 μM, added on top of 850 mM ethanol) induced sustained, concentration-dependent increases in [Ca 2+ ] i that were acutely dependent on external Ca 2+ and caused cell death. These actions were shared by the unsaturated metabolite arachidonic acid ethyl ester, the saturated equivalents palmitic and arachidic acid ethyl esters, and the fatty acid palmitoleic acid. In the absence of external Ca 2+ , releasing all Ca 2+ from the endoplasmic reticulum by ACh (10 μM) or the specific Ca 2+ pump inhibitor thapsigargin (2 μM) prevented such Ca 2+ signal generation. We conclude that nonoxidative fatty acid metabolites, rather than ethanol itself, are responsible for the marked elevations of [Ca 2+ ] i that mediate toxicity in the pancreatic acinar cell and that these compounds act primarily by releasing Ca 2+ from the endoplasmic reticulum.Keywords
This publication has 46 references indexed in Scilit:
- Morphological and functional changes of dissociated single pancreatic acinar cells: testing the suitability of the single cell as a model for exocytosis and calcium signalingCell Calcium, 2004
- Regulation of cell death: the calcium–apoptosis linkNature Reviews Molecular Cell Biology, 2003
- Early Changes in Pancreatic Acinar Cell Calcium Signaling after Pancreatic Duct ObstructionJournal of Biological Chemistry, 2003
- Localized Ca2+ uncaging reveals polarized distribution of Ca2+-sensitive Ca2+ release sitesThe Journal of cell biology, 2002
- Supramaximal cholecystokinin displaces Munc18c from the pancreatic acinar basal surface, redirecting apical exocytosis to the basal membraneJournal of Clinical Investigation, 2001
- Supramaximal cholecystokinin displaces Munc18c from the pancreatic acinar basal surface, redirecting apical exocytosis to the basal membraneJournal of Clinical Investigation, 2001
- Pancreatic acinar cells produce, release, and respond to tumor necrosis factor-alpha. Role in regulating cell death and pancreatitis.Journal of Clinical Investigation, 1997
- Calcium-Mediated Mechanisms in Chemically Induced Cell DeathAnnual Review of Pharmacology and Toxicology, 1992
- Effects of caerulein on the apical cytoskeleton of the pancreatic acinar cell.Journal of Clinical Investigation, 1990
- Mitochondrial dysfunction induced by fatty acid ethyl esters, myocardial metabolites of ethanol.Journal of Clinical Investigation, 1983