The purpose of the present study was to characterize the role of Na+, pH and cellular swelling in the pathogenesis of hypoxic injury to rat livers. METHODS AND RESULTS: When livers were perfused with hypoxic Krebs-Henseleit bicarbonate buffer (KHB) containing 143 mM Na+, release of LDH began after 30 min and was maximal after 60 min. In livers perfused with choline-substituted low-Na+ KHB (25 mM Na+), LDH release began after 60 min and peaked after 120 min or longer. Supplementation of KHB with mannitol, a permeant sugar with antioxidant properties, suppressed LDH release, whereas sucrose, an impermeant disaccharide, did not afford protection. At the end of hypoxic perfusions with KHB and low-Na+ KHB, liver weight was not different, whereas mannitol but not sucrose increased liver weight after hypoxia. At pH 7.4, monensin, a Na+-H+ ionophore, reversed protection against hypoxia by low-Na+ KHB (10 mM Na+) but had no effect at pH 6.8. As measured directly by confocal microscopy of biscarboxyethylcarboxyfluorescein fluorescence, pH was lower during perfusion with low-Na+ KHB than KHB. CONCLUSIONS: Cytoprotection by low Na+ was not mediated by prevention of Na+-dependent tissue swelling. Rather, promotion of intracellular acidification likely mediates cytoprotection in low-Na+ buffer.

Role of pH in protection by low sodium against hypoxic injury in isolated perfused rat livers

VAIRETTI, MARIAPIA;RICHELMI, PLINIO;BERTE', FRANCANTONIO;
2006-01-01

Abstract

The purpose of the present study was to characterize the role of Na+, pH and cellular swelling in the pathogenesis of hypoxic injury to rat livers. METHODS AND RESULTS: When livers were perfused with hypoxic Krebs-Henseleit bicarbonate buffer (KHB) containing 143 mM Na+, release of LDH began after 30 min and was maximal after 60 min. In livers perfused with choline-substituted low-Na+ KHB (25 mM Na+), LDH release began after 60 min and peaked after 120 min or longer. Supplementation of KHB with mannitol, a permeant sugar with antioxidant properties, suppressed LDH release, whereas sucrose, an impermeant disaccharide, did not afford protection. At the end of hypoxic perfusions with KHB and low-Na+ KHB, liver weight was not different, whereas mannitol but not sucrose increased liver weight after hypoxia. At pH 7.4, monensin, a Na+-H+ ionophore, reversed protection against hypoxia by low-Na+ KHB (10 mM Na+) but had no effect at pH 6.8. As measured directly by confocal microscopy of biscarboxyethylcarboxyfluorescein fluorescence, pH was lower during perfusion with low-Na+ KHB than KHB. CONCLUSIONS: Cytoprotection by low Na+ was not mediated by prevention of Na+-dependent tissue swelling. Rather, promotion of intracellular acidification likely mediates cytoprotection in low-Na+ buffer.
2006
Pharmacology & Toxicology includes all aspects of pharmacology, toxicology, and pharmaceutics. Of particular importance are cellular and molecular pharmacology, drug design and metabolism, mechanisms of drug action, drug delivery, natural products, xenobiotics, and clinical therapeutics. Toxicology coverage considers cellular and molecular effects of harmful substances, environmental toxicology, occupational exposure, and clinical toxicology. Drug bulletins, drug updates, and pharmaceutical newsletters are excluded as are resources on pharmaceutical engineering. Medicinal chemistry, or synthesis and chemical analysis of pharmaceuticals are placed in the Chemistry & Analysis category.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
44
5
894
901
8
ISI Category: GASTROENTEROLOGY & HEPATOLOGY 74 (total Journal); 4 (Journal RANK); Q1 (Quartile)
LIVER; HYPOXIA; pH; SODIUM
http://www.sciencedirect.com/science/article/pii/S0168827805005672
6
info:eu-repo/semantics/article
262
Vairetti, Mariapia; Richelmi, Plinio; Berte', Francantonio; Currin, R. T.; Lemasters, J. J.; Imberti, R.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/131759
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