Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease

Viral delivery of glial cell line-derived neurotrophic factor (GDNF) currently represents one of the most promising neuroprotective strategies for Parkinson's Disease (PD). However, the effect of this neurotrophic factor has never been tested in the newly available genetic models of PD based on...

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Main Authors: C. Lo Bianco, N. Déglon, W. Pralong, P. Aebischer
Format: Article
Language:English
Published: Elsevier 2004-11-01
Series:Neurobiology of Disease
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0969996104001494
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spelling doaj-e76cc3eacbf14af28663849a9a9190e02021-03-20T04:49:58ZengElsevierNeurobiology of Disease1095-953X2004-11-01172283289Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's diseaseC. Lo Bianco0N. Déglon1W. Pralong2P. Aebischer3Institute of Neuroscience, Swiss Federal Institute of Technology Lausanne, EPFL, Lausanne, SwitzerlandInstitute of Neuroscience, Swiss Federal Institute of Technology Lausanne, EPFL, Lausanne, SwitzerlandInstitute of Neuroscience, Swiss Federal Institute of Technology Lausanne, EPFL, Lausanne, SwitzerlandCorresponding author. Institute of Neuroscience, Swiss Federal Institute of Technology Lausanne, SG-AA1, EPFL, 1015 Lausanne, Switzerland. Fax: +41 21 693 9520.; Institute of Neuroscience, Swiss Federal Institute of Technology Lausanne, EPFL, Lausanne, SwitzerlandViral delivery of glial cell line-derived neurotrophic factor (GDNF) currently represents one of the most promising neuroprotective strategies for Parkinson's Disease (PD). However, the effect of this neurotrophic factor has never been tested in the newly available genetic models of PD based on the viral expression of mutated α-synuclein. In this study, we evaluated the ability of lentiviral vectors coding for GDNF (lenti-GDNF) to prevent nigral dopaminergic degeneration associated with the lentiviral mediated expression of the A30P mutant human α-synuclein (lenti-A30P). This virally based rat model develops a progressive and selective loss of dopamine neurons associated with the appearance of α-synuclein containing inclusions, thus recapitulating the major hallmarks of PD. Lenti-GDNF was injected in the substantia nigra 2 weeks before nigral administration of lenti-A30P. Although a robust expression of GDNF was observed in the whole nigrostriatal pathway due to retrograde and/or anterograde transport, lenti-GDNF did not prevent the α-synuclein-induced dopaminergic neurodegeneration in the lentiviral-based genetic rat model of PD. These results suggest that sustained GDNF treatment cannot modulate the cellular toxicity related to abnormal folded protein accumulation as mutated human α-synuclein.http://www.sciencedirect.com/science/article/pii/S0969996104001494Parkinsonα-synucleinLentiviral vectorSubstantia nigraGlial cell line-derived neurotrophic factorTyrosine-hydroxylase
collection DOAJ
language English
format Article
sources DOAJ
author C. Lo Bianco
N. Déglon
W. Pralong
P. Aebischer
spellingShingle C. Lo Bianco
N. Déglon
W. Pralong
P. Aebischer
Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
Neurobiology of Disease
Parkinson
α-synuclein
Lentiviral vector
Substantia nigra
Glial cell line-derived neurotrophic factor
Tyrosine-hydroxylase
author_facet C. Lo Bianco
N. Déglon
W. Pralong
P. Aebischer
author_sort C. Lo Bianco
title Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
title_short Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
title_full Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
title_fullStr Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
title_full_unstemmed Lentiviral nigral delivery of GDNF does not prevent neurodegeneration in a genetic rat model of Parkinson's disease
title_sort lentiviral nigral delivery of gdnf does not prevent neurodegeneration in a genetic rat model of parkinson's disease
publisher Elsevier
series Neurobiology of Disease
issn 1095-953X
publishDate 2004-11-01
description Viral delivery of glial cell line-derived neurotrophic factor (GDNF) currently represents one of the most promising neuroprotective strategies for Parkinson's Disease (PD). However, the effect of this neurotrophic factor has never been tested in the newly available genetic models of PD based on the viral expression of mutated α-synuclein. In this study, we evaluated the ability of lentiviral vectors coding for GDNF (lenti-GDNF) to prevent nigral dopaminergic degeneration associated with the lentiviral mediated expression of the A30P mutant human α-synuclein (lenti-A30P). This virally based rat model develops a progressive and selective loss of dopamine neurons associated with the appearance of α-synuclein containing inclusions, thus recapitulating the major hallmarks of PD. Lenti-GDNF was injected in the substantia nigra 2 weeks before nigral administration of lenti-A30P. Although a robust expression of GDNF was observed in the whole nigrostriatal pathway due to retrograde and/or anterograde transport, lenti-GDNF did not prevent the α-synuclein-induced dopaminergic neurodegeneration in the lentiviral-based genetic rat model of PD. These results suggest that sustained GDNF treatment cannot modulate the cellular toxicity related to abnormal folded protein accumulation as mutated human α-synuclein.
topic Parkinson
α-synuclein
Lentiviral vector
Substantia nigra
Glial cell line-derived neurotrophic factor
Tyrosine-hydroxylase
url http://www.sciencedirect.com/science/article/pii/S0969996104001494
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