Carl Ernst
Affiliations: | University of British Columbia, Vancouver, Vancouver, BC, Canada |
Area:
NeurogenesisGoogle:
"Carl Ernst"Mean distance: 14.13 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorBrian Ross Christie | grad student | University of British Columbia (UBC) & University of Victoria (UVic) | |
Gustavo Turecki | grad student | McGill |
BETA: Related publications
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Publications
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Hettige NC, Peng H, Wu H, et al. (2022) FOXG1 dose tunes cell proliferation dynamics in human forebrain progenitor cells. Stem Cell Reports |
Vaillancourt K, Chen GG, Fiori L, et al. (2021) Methylation of the tyrosine hydroxylase gene is dysregulated by cocaine dependence in the human striatum. Iscience. 24: 103169 |
Lutz PE, Chay MA, Pacis A, et al. (2021) Non-CG methylation and multiple histone profiles associate child abuse with immune and small GTPase dysregulation. Nature Communications. 12: 1132 |
Vaillancourt K, Yang J, Chen GG, et al. (2020) Cocaine-related DNA methylation in caudate neurons alters 3D chromatin structure of the IRXA gene cluster. Molecular Psychiatry |
Jefri M, Bell S, Peng H, et al. (2020) Stimulation of L-type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells. Stem Cells Translational Medicine |
Ernst C. (2020) A roadmap for neurodevelopmental disease modeling for non-stem cell biologists. Stem Cells Translational Medicine |
Bally BP, Farmer WT, Jones EV, et al. (2020) Human iPSC-Derived Down Syndrome Astrocytes Display Genome-Wide Perturbations in Gene Expression, an Altered Adhesion Profile, and Increased Cellular Dynamics. Human Molecular Genetics |
Bell S, Hettige NC, Silveira H, et al. (2019) Differentiation of Human Induced Pluripotent Stem Cells (iPSCs) into an Effective Model of Forebrain Neural Progenitor Cells and Mature Neurons. Bio-Protocol. 9: e3188 |
Hettige NC, Ernst C. (2019) Dose in Brain Development. Frontiers in Pediatrics. 7: 482 |
Bell S, Rousseau J, Peng H, et al. (2019) Mutations in ACTL6B Cause Neurodevelopmental Deficits and Epilepsy and Lead to Loss of Dendrites in Human Neurons. American Journal of Human Genetics |