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Oxidative stress induced by the Fe2+/ascorbic acid system or model ischemia in vitro: effect of carvedilol and pyridoindole antioxidant SMe1EC2 in young and adult rat brain tissue


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Balu M, Sangeetha P, Murali G, Panneerselvam C. (2005). Age-related oxidative protein damages in central nervous system of rats: modulatory role of grape seed extract. Int J Dev Neurosci 23: 501-507.Search in Google Scholar

Blackburn AC, Doe WF, Buffinton GD. (1999). Protein carbonyl formation on mucosal proteins in vitro and in dextran sulfate-induced colitis. Free Radic Biol Med 27: 262-270.Search in Google Scholar

Brunetti L, Menghini L, Orlando G, Recinella L, Leone S, Epifano F, Lazzarin F, Chiavaroli A, Ferrante C, Vacca M. (2009). Antioxidant effects of garlic in young and aged rat brain in vitro. J Med Food 12: 1166-1169.Search in Google Scholar

Carreira RS, Monteiro P, Goncalves LM, Providencia LA. (2006). Carvedilol: just another beta-blocker or a powerful cardioprotector? Cardiovasc Hematol Disord Drug Targets 6: 257-266.10.2174/18715290677901074617378771Search in Google Scholar

Desole MS, Esposito G, Enrico P, Miele M, Fresu L, De Natale G, Miele E, Grella G. (1993). Effects of ageing on 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) neurotoxic effects on striatum and brainstem in the rat. Neurosci Lett 159: 143-146.Search in Google Scholar

Gáspárová Z, Štolc S, Šnirc V. (2006). In vitro physiological evidence of enhanced neuroprotective and antioxidant action of 2,3-dihydromelatonin: a melatonin analogue. Pharmacol Res 53: 22-27.Search in Google Scholar

Gáspárová Z, Janega P, Babál P, Šnirc V, Štolc S, Mach M, Ujházy E. (2009). Effect of the new pyridoindole antioxidant SMe1EC2 on functional deficits and oedema formation in rat hippocampus exposed to ischaemia in vitro. Neuro Endocrinol Lett 30: 574-581.Search in Google Scholar

Gáspárová Z, Šnirc V, Štolc S, Dubovický M. Mach M, Ujházy E. (2010). Maternal treatment of rats with the new pyridoindole antioxidant during pregnancy and lactation resulting in improved offspring hippocampal resistance to ischemia in vitro. NeuroEndocrinol Lett 31: 348-352.Search in Google Scholar

Gleibus G, Lippa CF. (2007). The influence of beta-blockers on delayed memory function in people with cognitive function impairment. Am J Alzheimers Dis Other Demen 22: 57-61.Search in Google Scholar

Horáková L, Štolc S. (1998). Antioxidant and pharmacodynamic effect of pyridoindole stobadine. Gen Pharmacol 30: 627-638.Search in Google Scholar

Levine RL, Garland D, Oliver CN, Amici A, Climent I., Lenz AG, Ahn BW, Shaltiel S, Stadtman ER. (1990). Determination of carbonyl content in oxidatively modified proteins. Methods Enzymol 186: 464-478.Search in Google Scholar

Lysko PG, Webb CL, Feuerstein G. (1994). Neuroprotective effects of carvedilol, a new antihypertensive, as a Na+channel modulator and glutamate transport inhibitor. Neurosci Lett 171: 77-80.Search in Google Scholar

Oliviera PJ, Esteves T, Rolo AP, Palmeira CM, Moreno AJ. (2004). Carvedilol inhibits the mitochondrial permeability transition by an antioxidant mechanism. Cardivasc Toxicol 4: 11-20.Search in Google Scholar

Oliviera PJ, Goncalves L., Monteiro P., Providencia LA, Moreno AJ. (2005). Are the antioxidant properties of carvedilol important for the protection of cardiac mitochondria? Curr Vasc Pharmacol 3: 147-158.10.2174/157016105358690315853634Search in Google Scholar

Prakash AK, Kumar A. (2009). Effect of chronic treatment of carvedilol on oxidative stress in an intracerebroventricular streptozotocin induced model of dementia in rats. J Pharm Pharmacol 61: 1665-1672.Search in Google Scholar

Rabasseda X. (1998). Carvedilol: an effextive antihypertensive drug with antiischemic/antioxidant cardioprotective properties. Drugs Today (Barc) 34: 905-926.Search in Google Scholar

Ruffolo RR Jr, Gellai M., Hieble JP, Willette RN, Nichols AJ. (1990). The pharmacology of carvedilol. Eur. J Clin Pharmacol 38: Suppl 2, S82-88.Search in Google Scholar

Squier TC. (2001). Oxidative stress and protein aggregation during biological aging. Exp Gerontol 36: 1539-1550.Search in Google Scholar

Strosznajder RP, Jesko H, Dziewulska J. (2005). Effetc of carvedilol on neuronal survival and poly(ADP-ribose) polymerase activity in hippocampus after transient forebrain ischemia. Acta Neurobiol Exp 65: 137-144.Search in Google Scholar

Sumien H, Heinrich KR, Sohal RS, Forster MJ. (2004). Short-term vitamin E intake fails to improve cognitive or psychomotor performance of aged mice. Free Radic Biol Med 36: 1424-1433.Search in Google Scholar

Sung S, Yao Y, Uryu K, Yang H, Lee VM, Trojanowski JQ, Pratico D. (2004). Early vitamin E supplementation in young but not aged mice reduces Abeta levels and amyloid deposition in a transgenic model of Alzheimer's disease. FASEB J 18: 323-325.Search in Google Scholar

Štolc S, Šnirc V, Májeková M, Gáspárová Z, Gajdošíková A, Štvrtina S. (2006). Development of the new group of indole-derived neuroprotective drugs affecting oxidative stress. Cell Mol Neurobiol. 26: 1493-1502.Search in Google Scholar

Štolc S, Šnirc V, Gajdošíková A, Gajdošík A, Gáspárová Z, Ondrejičková O, Sotníková R, Viola A, Rapta P, Jariabka P, Syneková I, Vajdová M, Zacharová S, Nemček V, Krchnárová V. (2008). New pyridoindoles with antioxidant and neuroprotective actions, in Trends in pharmacological research (V. Bauer, ed.) pp. 118-136, Institute of Experimental Pharmacology, Bratislava, Slovakia.Search in Google Scholar

Ujházy E, Dubovický M, Ponechalová V, Navarová J, Brucknerová J, Šnirc V, Mach M. (2008). Prenatal developmental toxicity study of the pyridolindole antioxidant SMe1EC2 in rats. Neuro Endocrinol Lett 29: 639-643.Search in Google Scholar

Vlkolinský R, Štolc S. (1999). Effects of stobadine, melatonin, and other antioxidants on hypoxia / reoxygenation-induced synaptic transmission failure in rat hippocampal slices. Brain Res 850: 118-126.Search in Google Scholar

von Gall C, Weaver DR. (2008). Loss of responsiveness to melatonin in the aging mouse suprachiasmatic nucleus. Neurobiol Aging 29: 464-470.Search in Google Scholar

eISSN:
1337-9569
ISSN:
1337-6853
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Clinical Medicine, Pharmacology, Toxicology