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Pramipexole protects against MPTP toxicity in non-human primates
Mahmoud M. Iravani
, C. O. Haddon
, J. M. Cooper
, P. Jenner
, A. H. Schapira
Centre for Research in Mechanisms of Disease and Drug Discovery
Department of Clinical, Pharmaceutical and Biological Science
Basic and Clinical Science Unit
Centre for Health Services and Clinical Research
Research output
:
Contribution to journal
›
Article
›
peer-review
80
Citations (Scopus)
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Keyphrases
Nonhuman Primate
100%
MPP+ Toxicity
100%
Pramipexole
100%
Substantia Nigra
25%
Primates
25%
Dopaminergic Neuron Loss
12%
Cell Loss
12%
Neuronal Cells
12%
Toxicity in Vivo
12%
Common Marmoset
12%
Parkinson's Disease Model
12%
Tyrosine Hydroxylase
12%
Dopaminergic Cell Death
12%
Neurotoxin
12%
Dopamine Agonist
12%
Adaptive Change
12%
Parkinson's Disease
12%
Partial Models
12%
Primate Species
12%
Tyrosine Hydroxylase-positive Neurons
12%
Pars Compacta
12%
Striatal Dopamine
12%
Partial Lesion
12%
Pharmacology, Toxicology and Pharmaceutical Science
Pramipexole
100%
Mitochondrial Permeability Transition Pore
100%
1,2,3,6 Tetrahydro 1 Methyl 4 Phenylpyridine
100%
Dopamine Receptor Stimulating Agent
37%
Parkinson's Disease
25%
Tyrosine 3 Monooxygenase
25%
Dopamine 3 Receptor Stimulating Agent
12%
Neurotoxin
12%
Callithrix jacchus
12%