Thomas H. McNeill

Affiliations: 
Neuroscience University of Southern California, Los Angeles, CA, United States 
Area:
Neuroscience Biology, Molecular Biology, Behavioral Sciences Psychology
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"Thomas McNeill"
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Publications

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Gundimeda U, McNeill TH, Barseghian BA, et al. (2015) Polyphenols from green tea prevent antineuritogenic action of Nogo-A via 67-kDa laminin receptor and hydrogen peroxide. Journal of Neurochemistry. 132: 70-84
Gundimeda U, McNeill TH, Schiffman JE, et al. (2010) Green tea polyphenols potentiate the action of nerve growth factor to induce neuritogenesis: possible role of reactive oxygen species. Journal of Neuroscience Research. 88: 3644-55
Gopalakrishna R, Gundimeda U, Schiffman JE, et al. (2008) A direct redox regulation of protein kinase C isoenzymes mediates oxidant-induced neuritogenesis in PC12 cells. The Journal of Biological Chemistry. 283: 14430-44
Davis EJ, Coyne C, McNeill TH. (2007) Intrastriatal dopamine D1 antagonism dampens neural plasticity in response to motor cortex lesion. Neuroscience. 146: 784-91
Hughes-Davis EJ, Cogen JP, Jakowec MW, et al. (2005) Differential regulation of the growth-associated proteins GAP-43 and superior cervical ganglion 10 in response to lesions of the cortex and substantia nigra in the adult rat. Neuroscience. 135: 1231-9
McNeill TH, Brown SA, Hogg E, et al. (2003) Synapse replacement in the striatum of the adult rat following unilateral cortex ablation. The Journal of Comparative Neurology. 467: 32-43
Meshul CK, Cogen JP, Cheng HW, et al. (2000) Alterations in rat striatal glutamate synapses following a lesion of the cortico- and/or nigrostriatal pathway. Experimental Neurology. 165: 191-206
McNeill TH, Mori N, Cheng HW. (1999) Differential regulation of the growth-associated proteins, GAP-43 and SCG-10, in response to unilateral cortical ablation in adult rats. Neuroscience. 90: 1349-60
Cheng HW, Tong J, McNeill TH. (1998) Lesion-induced axon sprouting in the deafferented striatum of adult rat. Neuroscience Letters. 242: 69-72
Snyder SE, Cheng HW, Murray KD, et al. (1998) The messenger RNA encoding VGF, a neuronal peptide precursor, is rapidly regulated in the rat central nervous system by neuronal activity, seizure and lesion. Neuroscience. 82: 7-19
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