N-acetylcysteine and neurodegenerative diseases: Basic and clinical pharmacology

被引:169
作者
Arakawa, Motoki [1 ]
Ito, Yoshihisa [1 ]
机构
[1] Nihon Univ, Coll Pharm, Dept Clin Pharm, Res Unit Pharmacol, Chiba 2748555, Japan
关键词
N-acetylcysteine; ebselen; neuronal death; 4-hydroxynonenal; cerebellar granule neurons;
D O I
10.1080/14734220601142878
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
Increasing lines of evidence suggest a key role of oxidative stress in neurodegenerative diseases. Alzheimer's disease, Parkinson's disease, myoclonus epilepsy of the Unverricht-Lundborg type, spinocerebellar degeneration, tardive dyskinesia and Down's syndrome have been associated with several mitochondrial alterations. Oxidative stress can decrease cellular bioenergetic capacity, which will then increase the generation of reactive oxygen species resulting in cellular damage and programmed cell death. First, this review examines the mechanisms of action of N-acetylcysteine (NAC), an antioxidant and a free radical-scavenging agent that increases intracellular GSH, at the cellular level. NAC can act as a precursor for glutathione synthesis as well as a stimulator of the cytosolic enzymes involved in glutathione regeneration. The chemical properties of NAC include redox interactions, particularly with other members of the group XIV elements (selenium, etc.) and ebselen, a lipid-soluble seleno-organic compound. Second, NAC has been shown to protect against oxidative stress-induced neuronal death in cultured granule neurons. Recent findings on the protective effect of NAC against 4-hydroxytionerial (HNE)-induced toxicity in cerebellar granule neurons are summarized. Finally, the protective pharmacokinetics of NAC in humans and the possible usefulness of NAC for the treatment of neurodegenerative diseases are discussed with reference to basic and clinical studies.
引用
收藏
页码:308 / 314
页数:7
相关论文
共 73 条
[1]
ALZHEIMERS AND PARKINSONS-DISEASE - BRAIN LEVELS OF GLUTATHIONE, GLUTATHIONE DISULFIDE, AND VITAMIN-E [J].
ADAMS, JD ;
KLAIDMAN, LK ;
ODUNZE, IN ;
SHEN, HC ;
MILLER, CA .
MOLECULAR AND CHEMICAL NEUROPATHOLOGY, 1991, 14 (03) :213-226
[2]
4-hydroxynonenal modulates the long-term potentiation induced by L-type Ca2+ channel activation in the rat dentate gyrus in vitro [J].
Akaishi, T ;
Nakazawa, K ;
Sato, K ;
Ohno, Y ;
Ito, Y .
NEUROSCIENCE LETTERS, 2004, 370 (2-3) :155-159
[3]
Modulation of voltage-gated Ca2+ current by 4-hydroxynonenal in dentate granule cells [J].
Akaishi, T ;
Nakazawa, K ;
Sato, K ;
Saito, H ;
Ohno, Y ;
Ito, Y .
BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2004, 27 (02) :174-179
[4]
ARAKAWA M, IN PERSS NEUROSCI RE
[5]
N-acetylcysteine selectively protects cerebellar granule cells from 4-hydroxynonenal-induced cell death [J].
Arakawa, Motoki ;
Ushimaru, Nobuyuki ;
Osada, Nobuhiro ;
Oda, Tetsuro ;
Ishige, Kumiko ;
Ito, Yoshihisa .
NEUROSCIENCE RESEARCH, 2006, 55 (03) :255-263
[6]
THE ANTIOXIDANT ACTION OF N-ACETYLCYSTEINE - ITS REACTION WITH HYDROGEN-PEROXIDE, HYDROXYL RADICAL, SUPEROXIDE, AND HYPOCHLOROUS ACID [J].
ARUOMA, OI ;
HALLIWELL, B ;
HOEY, BM ;
BUTLER, J .
FREE RADICAL BIOLOGY AND MEDICINE, 1989, 6 (06) :593-597
[7]
Awasthi Yogesh C., 2003, Molecular Aspects of Medicine, V24, P219
[8]
ROLE OF MEMBRANE-TRANSPORT IN METABOLISM AND FUNCTION OF GLUTATHIONE IN MAMMALS [J].
BANNAI, S ;
TATEISHI, N .
JOURNAL OF MEMBRANE BIOLOGY, 1986, 89 (01) :1-8
[9]
Redox regulation of neuronal migration in a down syndrome model [J].
Behar, TN ;
Colton, CA .
FREE RADICAL BIOLOGY AND MEDICINE, 2003, 35 (06) :566-575
[10]
Preferential effects of nicotine and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone on mitochondrial glutathione S-transferase A4-4 induction and increased oxidative stress in the rat brain [J].
Bhagwat, SV ;
Vijayasarathy, C ;
Raza, H ;
Mullick, J ;
Avadhani, NG .
BIOCHEMICAL PHARMACOLOGY, 1998, 56 (07) :831-839