Commentary
Neuroprotective therapeutic strategies comparison of experimental and clinical results

https://doi.org/10.1016/0006-2952(95)00051-ZGet rights and content

First page preview

First page preview
Click to open first page preview

References (135)

  • K Maiese et al.

    Nitric oxide—A downstream mediator of calcium toxicity in the ischemic cascade

    Neurosci Lett

    (1994)
  • C.W. Olanow

    A radical hypothesis for neurodegeneration

    Trends Neurosci

    (1993)
  • C.H. Sachs et al.

    Mechanism of action of 6-hydroxydopamine

    Pharmacology

    (1975)
  • S Hall et al.

    MRI, brain iron and experimental Parkinson's disease

    J Neurol Sci

    (1992)
  • H.P. Monteiro et al.

    6-Hydroxydopamine releases iron from ferritin and promotes ferritin-dependent lipid peroxidation

    Biochem Pharmacol

    (1989)
  • G.W. Sengstock et al.

    Iron induces degeneration of nigrostriatal neurons

    Brain Res Bull

    (1992)
  • JD Adams et al.

    MPP+ and MPDP+ induced oxygen radical formation with mitochondrial enzymes

    Free Radic Biol Med

    (1993)
  • W Beyer et al.

    Superoxide dismutases

    Prog Nucleic Acid Res Mol Biol

    (1991)
  • CA Colton et al.

    Production of Superoxide anions by a CNS macrophage, the microglia

    FEBS Lett

    (1987)
  • JB Hibbs et al.

    Iron depletion: Possible cause of tumor cell cytotoxicity induced by activated macrophages

    Biochem Biophys Res Commun

    (1984)
  • HHW Schmidt et al.

    Purification and characterization of a human NO synthase

    Biochem Biophys Res Commun

    (1991)
  • MWJ Cleeter et al.

    Reversible inhibition of cytochrome c oxidase, the terminal enzyme of the mitochondrial respiratory chain, by nitric oxide. Implications for neurodegenerative diseases

    FEBS Lett

    (1994)
  • T Nakaki et al.

    Inhibition by nitric oxide and nitric oxide-producing vasodilators of DNA synthesis in vasular smooth muscle cells

    Eur J Pharmacol

    (1990)
  • DW Reif et al.

    Nitric oxide mediates iron from ferritin

    Arch Biochem Biophys

    (1990)
  • S Moncada et al.

    Nitric oxide

    Biochem Pharmacol

    (1988)
  • R Radi et al.

    Peroxynitrite oxidation of sulfhydryls. The cytotoxic potential of Superoxide and nitric oxide

    J Biol Chem

    (1991)
  • GM Rubanyi et al.

    Cytoprotective function of nitric oxide: Inactivation of Superoxide radicals produced by human leukocytes

    Biochem Biophys Res Commun

    (1991)
  • RPM Bruyn et al.

    The quinolinic acid hypothesis in Huntington's chorea

    J Neurol Sci

    (1990)
  • MP Heyes et al.

    Normal excretion of quinolinic acid in Huntington's disease

    Life Sci

    (1985)
  • MP Heyes et al.

    Regional brain and cerebrospinal fluid quinolinic acid concentrations in Huntington's disease

    Neurosci Lett

    (1991)
  • E Hasegawa et al.

    1-Methyl-4-phenylpyridinium (MPP+) induces NADH-dependent Superoxide formation and enhances NADH-dependent lipid peroxidation in bovine heart submitochondrial particles

    Biochem Biophys Res Commun

    (1990)
  • T Arendt et al.

    Loss of neurons in the nucleus basalis of Meynert in Alzheimer's disease, paralysis agitans and Korsakoff's disease

    Acta Neuropathol Berl

    (1983)
  • P.J. Whitehouse et al.

    Alzheimer disease: Evidence for selective loss of cholinergic neurons in the nucleus basalis

    Ann Neurol

    (1981)
  • K Jellinger

    Pathology of Parkinson's disease

  • M Gerlach et al.

    The pathophysiological basis of Parkinson's disease

  • B Meldrum et al.

    Excitatory amino acid neurotoxicity and neurodegenerative disease

  • B Halliwell

    Reactive oxygen species and the central nervous system

    J Neurochem

    (1992)
  • M Gerlach et al.

    Altered brain metabolism of iron as a cause of neurodegenerative diseases?

    J Neurochem

    (1994)
  • H Reichmann et al.

    Parkinson's disease and the electron transport chain in post mortem brain

  • L Turski et al.

    Towards an understanding of the role of glutamate in neurodegenerative disorders: Energy metabolism and neuropathology

    Experientia

    (1993)
  • B.K. Siesjö

    Calcium in the brain under physiological and pathological conditions

    Eur Neurol

    (1990)
  • D Ben-Shachar et al.

    The iron chelator desferrioxamine (desferal) retards 6-hydroxydopamine-induced degeneration of nigrostriatal neurons

    J Neurochem

    (1991)
  • M Miyamoto et al.

    Antioxidants protect against glutamate-induced cytotoxicity in a neuronal cell line

    J Pharmacol Exp Ther

    (1989)
  • J.S. Schneider et al.

    Recovery from experimental Parkinsonism in primates with GM1 ganglioside treatment

    Science

    (1992)
  • JH Prehn et al.

    Dihydrolipoate reduces neuronal injury after cerebral ischemia

    J Cereb Blood Flow Metab

    (1992)
  • KM Nozaki et al.

    Neuroprotective effects of lkynurenine on hypoxia-ischemia and NMDA lesions in neonatal rats

    J Cereb Blood Flow Metab

    (1992)
  • P.K. Sonsalla et al.

    Role for excitatory amino acids in methamphetamine-induced nigrostriatal dopaminergic toxicity

    Science

    (1989)
  • T Ohmori et al.

    Competitive and noncompetitive N-methyl-D-aspartate antagonists protect dopaminergic and serotonergic neurotoxicity produced by methamphetamine in various brain regions

    J Neural Transm

    (1993)
  • M Seif el Nasr et al.

    Neuroprotective effect of memantine demonstrated in vivo and in vitro

    Eur J Pharmacol

    (1990)
  • E.C. Azmitia

    Nimodipine attenuates NMDA- and MDMA-induced toxicity of cultured fetal serotonergic neurons: Evidence for a generic model of calcium toxicity

  • Cited by (32)

    • Effect of S-adenosyl-L-methionine on rat brain oxidative stress damage in a combined model of permanent focal ischemia and global ischemia-reperfusion

      2000, Brain Research
      Citation Excerpt :

      This mechanism was cited by Yatsugi et al. [38] to explain their finding that SAM improved memory impairments in rats subjected to brain ischemia. An additional factor that cannot be ruled out is a hypothetical neuroprotective effect of SAM based on its demonstrated antioxidant action, as other antioxidant substances have been shown to have a neuroprotective effect [2,11–16,37]. These results are in agreement with Kinouchi et al. [22] and Mizui et al. [29], who demonstrated the importance of glutathione in rats and SOD-1 transgenic mice after permanent focal cerebral ischemia.

    View all citing articles on Scopus
    View full text