Effects of NMDA and ferrous sulfate on oxidation and cell death in primary neuronal cultures
Tài liệu tham khảo
Adams, 1991, Oxygen free radicals and Parkinson’s disease, Free Radic. Biol. Med., 10, 161, 10.1016/0891-5849(91)90009-R
Chan, 1990, Reduced neurotoxicity in transgenic mice overexpressing human copper–zinc-superoxide dismutase, Stroke, 21, 80
Chandler, 1994, Magnesium and zinc potentiate ethanol inhibition of NMDA stimulated nitric oxide synthase in cortical neurons, J. Pharmacol. Exp. Therap., 271, 67
Chandler, 1993, Ethanol inhibits NMDA receptor-mediated excitotoxicity in rat primary neuronal cultures, Alcohol. Clin. Exp. Res., 17, 54, 10.1111/j.1530-0277.1993.tb00726.x
Chandler, 1997, Chronic ethanol increases NMDA-stimulated nitric oxide formation but not receptor density in cultured cortical neurons, Mol. Pharmacol., 51, 733, 10.1124/mol.51.5.733
Choi, 1987, Ionic dependance of glutamate neurotoxicity in cortical cell culture, J. Neurosci., 7, 369, 10.1523/JNEUROSCI.07-02-00369.1987
Chou, 1990, Characterization of glucocorticoid type II receptors in neuronal and glial cultures from rat brain, J. Neuroendocrinol., 2, 29, 10.1111/j.1365-2826.1990.tb00389.x
Dawson, 1993, Mitochondria as a source of reactive oxygen species during reductive stress in rat hepatocytes, Am. J. Physiol., 264, C961, 10.1152/ajpcell.1993.264.4.C961
Dexter, 1989, Basal lipid peroxidation in substantia nigria is increased in Parkinson’s disease, J. Neurochem., 52, 381, 10.1111/j.1471-4159.1989.tb09133.x
Dugan, 1995, Mitochondrial production of reactive oxygen species in cortical neurons following exposure to N-methyl-D-aspartate, J. Neurosci., 15, 6377, 10.1523/JNEUROSCI.15-10-06377.1995
Gores, G.J., Flarsheim, C.E., Dawson, T.L., Nieminen, A., Herman, B., Lemasters, J.J., 1989. Swelling, reductive stress, and cell death during chemical hypoxia in hepatocytes. J. Physiol., 347–354
Gunasekar, 1995, Monitoring intracellular nitric oxide formation by dichlorofluorescin in neuronal cells, J. Neurosci., 61, 15
Gunasekar, 1995, NMDA receptor activation produces concurrent generation of nitric oxide and reactive oxygen species: implication for cell death, J. Neurochem., 65, 2016, 10.1046/j.1471-4159.1995.65052016.x
Haber, 1934, The catalytic decomposition of hydrogen peroxide by iron salts, Proc. R. Soc. Ser. A, 147, 332, 10.1098/rspa.1934.0221
Harris, 1994, Detection of oxidation products in individual neurons by fluorescence microscopy, Exp. Neurology, 129, 95, 10.1006/exnr.1994.1150
Jesberger, 1991, Oxygen free radicals and brain dysfunction, Int. J. Neurosci., 57, 1, 10.3109/00207459109150342
Kinouchi, 1991, Attenuation of focal cerebral ischemic injury in trasgenic mice overexpressing CuZn superoxide dismutase, Proc. Natl. Acad. Sci. USA, 88, 11158, 10.1073/pnas.88.24.11158
Lafon-Cazal, 1993, NMDA-dependent superoxide production and neurotoxicity, Nature, 364, 535, 10.1038/364535a0
Lipton, 1993, A redox-based mechanism for the neuroprotective and neurodestructive effects of nitric oxide and related nitroso-compounds, Nature, 364, 626, 10.1038/364626a0
Luo, 1993, N-methyl-D-aspartate-induced nitric oxide release: an in vivo microdialysis study, J. Neurosci., 57, 897, 10.1016/0306-4522(93)90035-E
Mattson, 1995, Neurotrophic factors attenuate glutamate-induced accumulation of peroxides, elevation of intracellular calcium concentration, and neurotoxicity and increase antioxidant enzyme activities in hippocampal neurons, J. Neurochem., 65, 1740, 10.1046/j.1471-4159.1995.65041740.x
McCord, 1978, Superoxide-dependent production of hydroxyl radical catalyzed by iron-EDTA complex, FEBS Lett., 86, 139, 10.1016/0014-5793(78)80116-1
Nieminen, 1997, Mitochondrial permeability transition in hepatocytes induced by t-BuOOH: NMD(P)H and reactive oxygen species, Am. J. Physiol., 272, 1286, 10.1152/ajpcell.1997.272.4.C1286
Olanow, 1990, Oxidation reactions in Parkinson’s disease, Neurology, 40, 32
Oyama, 1994, Characterization of 2′,7′-dichlorofluorescin fluorescence in dissociated mammalian brain neurons: estimation on intracellular content of hydrogen peroxide, Brain Res., 635, 113, 10.1016/0006-8993(94)91429-X
Oyama, 1993, Fluorescent estimation of the effect of Ca2+ antagonists on the oxidative metabolism in dissociated mammalian brain neurons, Brain Res., 610, 172, 10.1016/0006-8993(93)91234-J
Reynolds, 1995, Glutamate induces the production of reactive oxygen species in cultured forebrain neurons following NMDA receptor activation, J. Neurosci., 15, 3318, 10.1523/JNEUROSCI.15-05-03318.1995
Royall, 1993, Evaluation of 2′,7′-dichlorofluorescin and dihydrorhodamine 123 as fluorescent probes for intracellular H2O2 in cultures endothelial cells, Arch. Biochem. Biophys., 302, 348, 10.1006/abbi.1993.1222
Rudolph, 1997, Use of a multiwell fluorescence scanner with propidium iodide to assess NMDA mediated excitotoxicity in rat cortical neuronal cultures, Neurosci. Lett., 221, 149, 10.1016/S0304-3940(96)13313-9
Snyder, S.H., Bredt, D.S., 1992. Biological roles of nitric oxide. Sci. American (May), 68–77
Zhang, 1993, Basic FGF, NGF, and IGF’s protect hippocampal and cortical neurons against iron-induced degeneration, J. Cerebral Blood Flow and Metabolism, 13, 378, 10.1038/jcbfm.1993.51