Cassandre Labelle-Dumais

Affiliations: 
McGill University, Montreal, QC, Canada 
Area:
dopamine development
Google:
"Cassandre Labelle-Dumais"
Mean distance: 14.95 (cluster 6)
 
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Publications

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Labelle-Dumais C, Pyatla G, Paylakhi S, et al. (2020) Loss of PRSS56 function leads to ocular angle defects and increased susceptibility to high intraocular pressure. Disease Models & Mechanisms
Labelle-Dumais C, Schuitema V, Hayashi G, et al. (2019) COL4A1 Mutations Cause Neuromuscular Disease with Tissue-Specific Mechanistic Heterogeneity. American Journal of Human Genetics. 104: 847-860
Hayashi G, Labelle-Dumais C, Gould DB. (2018) Use of 4-phenylbutyrate to define therapeutic parameters for reducing intracerebral hemorrhage and myopathy in mutant mice. Disease Models & Mechanisms
Kuo DS, Labelle-Dumais C, Mao M, et al. (2014) Allelic heterogeneity contributes to variability in ocular dysgenesis, myopathy and brain malformations caused by Col4a1 and Col4a2 mutations. Human Molecular Genetics. 23: 1709-22
Jeanne M, Labelle-Dumais C, Jorgensen J, et al. (2012) COL4A2 mutations impair COL4A1 and COL4A2 secretion and cause hemorrhagic stroke. American Journal of Human Genetics. 90: 91-101
Labelle-Dumais C, Dilworth DJ, Harrington EP, et al. (2011) COL4A1 mutations cause ocular dysgenesis, neuronal localization defects, and myopathy in mice and Walker-Warburg syndrome in humans. Plos Genetics. 7: e1002062
Manitt C, Labelle-Dumais C, Eng C, et al. (2010) Peri-pubertal emergence of UNC-5 homologue expression by dopamine neurons in rodents. Plos One. 5: e11463
Grant A, Speed Z, Labelle-Dumais C, et al. (2009) Post-pubertal emergence of a dopamine phenotype in netrin-1 receptor-deficient mice. The European Journal of Neuroscience. 30: 1318-28
Flores C, Bhardwaj SK, Labelle-Dumais C, et al. (2009) Altered netrin-1 receptor expression in dopamine terminal regions following neonatal ventral hippocampal lesions in the rat. Synapse (New York, N.Y.). 63: 54-60
Grant A, Hoops D, Labelle-Dumais C, et al. (2007) Netrin-1 receptor-deficient mice show enhanced mesocortical dopamine transmission and blunted behavioural responses to amphetamine. The European Journal of Neuroscience. 26: 3215-28
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