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John W. Haycock grad student 2000 LSU Health Sciences Center
 (Regulation of tyrosine hydroxylase phosphorylation in situ and in vivo.)
Greg Gerhardt post-doc University of Kentucky
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Kasanga EA, Owens CL, Cantu MA, et al. (2019) GFR-α1 expression in substantia nigra increases bilaterally following unilateral striatal GDNF in aged rats and attenuates nigral tyrosine hydroxylase loss following 6-OHDA nigrostriatal lesion. Acs Chemical Neuroscience
Churchill MJ, Cantu MA, Kasanga EA, et al. (2019) Glatiramer acetate reverses motor dysfunction and the decrease in tyrosine hydroxylase levels in a mouse model of Parkinson's disease. Neuroscience
Salvatore MF, McInnis TR, Cantu MA, et al. (2018) Tyrosine Hydroxylase Inhibition in Substantia Nigra Decreases Movement Frequency. Molecular Neurobiology
Salvatore MF, Nejtek VA, Khoshbouei H. (2018) Prolonged increase in ser31 tyrosine hydroxylase phosphorylation in substantia nigra following cessation of chronic methamphetamine. Neurotoxicology
Arnold JC, Cantu MA, Kasanga EA, et al. (2017) Aging-related limit of exercise efficacy on motor decline. Plos One. 12: e0188538
Salvatore MF, Terrebonne J, Cantu MA, et al. (2017) Dissociation of striatal dopamine and tyrosine hydroxylase expression from aging-related motor decline: evidence from calorie restriction intervention. The Journals of Gerontology. Series a, Biological Sciences and Medical Sciences
Chotibut T, Meadows S, Kasanga EA, et al. (2017) Ceftriaxone reduces L-dopa-induced dyskinesia severity in 6-hydroxydopamine parkinson's disease model. Movement Disorders : Official Journal of the Movement Disorder Society
Salvatore MF, Calipari ES, Jones SR. (2016) Regulation of tyrosine hydroxylase expression and phosphorylation in dopamine transporter-deficient mice. Acs Chemical Neuroscience
Salvatore MF, Terrebonne J, Fields V, et al. (2015) Initiation of calorie restriction in middle-aged male rats attenuates aging-related motoric decline and bradykinesia without increased striatal dopamine. Neurobiology of Aging
Arnold JC, Salvatore MF. (2015) Exercise-mediated increase in nigral tyrosine hydroxylase is accompanied by increased nigral GFR-α1 and EAAC1 expression in aging rats. Acs Chemical Neuroscience
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