Neuronal transfer of the human Cu/Zn superoxide dismutase gene increases the resistance of dopaminergic neurons to 6-hydroxydopamine

被引:27
作者
Barkats, M [1 ]
Millecamps, S [1 ]
Bilang-Bleuel, A [1 ]
Mallet, J [1 ]
机构
[1] Hop La Pitie Salpetriere, LGN, CNRS,UMR C9923, Lab Genet Mol Neurotransmiss & Proc Neurodegenerat, F-75013 Paris, France
关键词
adenovirus; dopaminergic neurons; gene therapy; oxidative stress; Parkinson's disease;
D O I
10.1046/j.1471-4159.2002.00952.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Several mechanisms are thought to be involved in the progressive decline in neurons of the substantia nigra pars compacta (SNpc) that leads to Parkinson's disease (PD). Neurotoxin 6-hydroxydopamine (6-OHDA), which induces parkinsonian symptoms in experimental animals, is thought to be formed endogenously in patients with PD through dopamine (DA) oxidation and may cause dopaminergic cell death via a free radical mechanism. We therefore investigated protection against 6-OHDA by inhibiting oxidative stress using a gene transfer strategy. We overexpressed the antioxidative Cu/Zn-superoxide dismutase (SOD1) enzyme in primary culture dopaminergic cells by infection with an adenovirus carrying the human SOD1 gene (Ad-hSOD1). Survival of the dopaminergic cells exposed to 6-OHDA was 50% higher among the SOD1-producing cells than the cells infected with control adenoviruses. In contrast, no significant increased survival of (6-OHDA)-treated dopaminergic cells was observed when they were infected with an adenovirus expressing the H-2 O-2 -scavenging glutathione peroxidase (GPx) enzyme. These results underline the major contribution of superoxide in the dopaminergic cell death process induced by 6-OHDA in primary cultures. Overall, this study demonstrates that the survival of the dopaminergic neurons can be highly increased by the adenoviral gene transfer of SOD1. An antioxidant gene transfer strategy using viral vectors expressing SOD1 is therefore potentially beneficial for protecting dopaminergic neurons in PD.
引用
收藏
页码:101 / 109
页数:9
相关论文
共 30 条
[1]   TRANSFER OF A FOREIGN GENE INTO THE BRAIN USING ADENOVIRUS VECTORS [J].
AKLI, S ;
CAILLAUD, C ;
VIGNE, E ;
STRATFORDPERRICAUDET, LD ;
POENARU, L ;
PERRICAUDET, M ;
KAHN, A ;
PESCHANSKI, MR .
NATURE GENETICS, 1993, 3 (03) :224-228
[2]   BRAIN PEROXIDASE AND CATALASE IN PARKINSON DISEASE [J].
AMBANI, LM ;
VANWOERT, MH ;
MURPHY, S .
ARCHIVES OF NEUROLOGY, 1975, 32 (02) :114-118
[3]   THE DETERMINATION OF HYDROXYDOPAMINES AND OTHER TRACE AMINES IN THE URINE OF PARKINSONIAN-PATIENTS AND NORMAL CONTROLS [J].
ANDREW, R ;
WATSON, DG ;
BEST, SA ;
MIDGLEY, JM ;
WENLONG, H ;
PETTY, RKH .
NEUROCHEMICAL RESEARCH, 1993, 18 (11) :1175-1177
[4]   Attenuation of 6-hydroxydopamine-induced dopaminergic nigrostriatal lesions in superoxide dismutase transgenic mice [J].
Asanuma, M ;
Hirata, H ;
Cadet, JL .
NEUROSCIENCE, 1998, 85 (03) :907-917
[5]   DIRECT INVIVO GENE-TRANSFER TO EPENDYMAL CELLS IN THE CENTRAL-NERVOUS-SYSTEM USING RECOMBINANT ADENOVIRUS VECTORS [J].
BAJOCCHI, G ;
FELDMAN, SH ;
CRYSTAL, RG ;
MASTRANGELI, A .
NATURE GENETICS, 1993, 3 (03) :229-234
[6]   An adenovirus encoding CuZnSOD protects cultured striatal neurones against glutamate toxicity [J].
Barkats, M ;
Bemelmans, AP ;
Geoffroy, MC ;
Robert, JJ ;
Loquet, I ;
Horellou, P ;
Revah, F ;
Mallet, J .
NEUROREPORT, 1996, 7 (02) :497-501
[7]   Intrastriatal grafts of embryonic mesencephalic rat neurons genetically modified using an adenovirus encoding human Cu/Zn superoxide dismutase [J].
Barkats, M ;
Nakao, N ;
GrasbonFrodl, EM ;
BilangBleuel, A ;
Revah, F ;
Mallet, J ;
Brundin, P .
NEUROSCIENCE, 1997, 78 (03) :703-713
[8]   Overexpression of glutathione peroxidase increases the resistance of neuronal cells to Aβ-mediated neurotoxicity [J].
Barkats, M ;
Millecamps, S ;
Abrioux, P ;
Geoffroy, MC ;
Mallet, J .
JOURNAL OF NEUROCHEMISTRY, 2000, 75 (04) :1438-1446
[9]   Attenuation of 6-OHDA-induced neurotoxicity in glutathione peroxidase transgenic mice [J].
Bensadoun, JC ;
Mirochnitchenko, O ;
Inouye, M ;
Aebischer, P ;
Zurn, AD .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1998, 10 (10) :3231-3236
[10]   Neuroprotective mechanism of glial cell line-derived neurotrophic factor on dopamine neurons: role of antioxidation [J].
Chao, CC ;
Lee, EHY .
NEUROPHARMACOLOGY, 1999, 38 (06) :913-916