Role of cellular calcium homeostasis in toxic liver injury induced by the pyrrolizidine alkaloid senecionine and the alkenal trans‐4‐OH‐2‐hexenal
- 1 September 1987
- journal article
- research article
- Published by Wiley in Journal of Biochemical Toxicology
- Vol. 2 (3) , 155-167
- https://doi.org/10.1002/jbt.2570020302
Abstract
The pyrrolizidine alkaloid senecionine has been shown to be hepatotoxic, genotoxic, and cytotoxic. However, the biochemical mechanism by which senecionine produces hepatocellular toxicity remains to be elucidated. The role of calcium homeostasis in toxic liver injury was examined in isolated rat hepatocytes treated with senecionine and trans-4-OH-2-hexenal (t-4HH), a microsomal metabolite of senecionine, and appropriate cofactors. Hepatocytes treated with senecionine and t-4HH demonstrated greater cytotoxicity (leakage of lactate dehydrogenase) when incubated in the absence of extracellular Ca2+ than in its presence. Both compounds elicited an increase in cytosolic Ca2+ levels of isolated hepatocytes in the presence of extracellular Ca2+ In the following study, senecionine and t-4HH depleted intracellular glutathione levels and induced lipid peroxidation and cytotoxicity in isolated hepatocytes. Pretreatment with the thiolgroup reducing agent dithiothreitol prevented depletion of intracellular glutathione and protected hepatocytes against senecionine and t-4HH-induced lipid peroxidation and cytotoxicity. Both compounds also depleted intracellular ATP and NADPH levels. These results suggest that hepatotoxocity induced by senecionine and t-4HH is not dependent on the influx of extracellular Ca2+; however, alterations in intracellular Ca2+, possibly associated with depletion of intracellular glutathione, NADPH, and ATP, may play a critical role.Keywords
This publication has 38 references indexed in Scilit:
- Genotoxicity and cytotoxicity of selected pyrrolizidine alkaloids, A possible alkenal metabolite of the alkaloids, and related alkenalsToxicology and Applied Pharmacology, 1986
- Trans -4-Hydroxy-2-Hexenal: a Reactive Metabolite from the Macrocyclic Pyrrolizidine Alkaloid SenecionineScience, 1985
- Mechanism of chemical-induced toxicityToxicology and Applied Pharmacology, 1985
- Extracellular calcium protects isolated rat hepatocytes from injuryBiochemical and Biophysical Research Communications, 1984
- Increase in cytosolic Ca2+ concentration during t‐butyl hydroperoxide metabolism by isolated hepatocytes involves NADPH oxidation and mobilization of intracellular Ca2+ storesFEBS Letters, 1984
- On the relationship between Ca2+ efflux and membrane damage during t‐butylhydroperoxide metabolism by liver mitochondriaFEBS Letters, 1983
- Bleb Formation in Hepatocytes During Drug Metabolism Is Caused by Disturbances in Thiol and Calcium Ion HomeostasisScience, 1982
- Toxic Injury to Isolated Hepatocytes Is Not Dependent on Extracellular CalciumScience, 1981
- The conversion of pyrrolizidine alkaloids to N-oxides and to dihydropyrrolizine derivatives by rat-liver microsomes in vitroChemico-Biological Interactions, 1971
- Some Factors Affecting the Conversion of Pyrrolizidine Alkaloids toN-Oxides and to Pyrrolic Derivativesin vitroXenobiotica, 1971