Andrea L. Johnstone, Ph.D.

2011 Neuroscience (Medicine) University of Miami, Coral Gables, FL 
"Andrea Johnstone"
Mean distance: 14.68 (cluster 27)


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John L. Bixby grad student 2011 University of Miami
 (Overcoming glial-derived inhibition of regeneration in CNS neurons: From novel compounds to novel uses for FDA approved compounds.)
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Johnstone AL, Andrade NS, Barbier E, et al. (2019) Dysregulation of the histone demethylase KDM6B in alcohol dependence is associated with epigenetic regulation of inflammatory signaling pathways. Addiction Biology. e12816
Heilig M, Wahlestedt C, Barbier E, et al. (2018) 10. Epigenetic Enzymes as Novel Therapeutic Targets in Alcohol Addiction Biological Psychiatry. 83: S4
Gidlöf O, Johnstone AL, Bader K, et al. (2016) Ischemic Preconditioning Confers Epigenetic Repression of Mtor and Induction of Autophagy Through G9a-Dependent H3K9 Dimethylation. Journal of the American Heart Association. 5
Heilig M, Barbier E, Johnstone AL, et al. (2016) Reprogramming of mPFC transcriptome and function in alcohol dependence. Genes, Brain, and Behavior
Barbier E, Johnstone AL, Khomtchouk BB, et al. (2016) Dependence-induced increase of alcohol self-administration and compulsive drinking mediated by the histone methyltransferase PRDM2. Molecular Psychiatry
Zeier Z, Esanov R, Belle KC, et al. (2015) Bromodomain inhibitors regulate the C9ORF72 locus in ALS. Experimental Neurology. 271: 241-50
Pastori C, Daniel M, Penas C, et al. (2014) BET bromodomain proteins are required for glioblastoma cell proliferation. Epigenetics : Official Journal of the Dna Methylation Society. 9: 611-20
Johnstone JT, Morton PD, Jayakumar AR, et al. (2013) Inhibition of NADPH oxidase activation in oligodendrocytes reduces cytotoxicity following trauma. Plos One. 8: e80975
Johnstone AL, Reierson GW, Smith RP, et al. (2012) A chemical genetic approach identifies piperazine antipsychotics as promoters of CNS neurite growth on inhibitory substrates. Molecular and Cellular Neurosciences. 50: 125-35
Usher LC, Johnstone A, Ertürk A, et al. (2010) A chemical screen identifies novel compounds that overcome glial-mediated inhibition of neuronal regeneration. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 4693-706
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