Sunita Sharma, Ph.D.

Affiliations: 
2009 The University of North Dakota, Grand Forks, ND, United States 
Area:
Pharmacology, Neuroscience Biology, Cognitive Psychology
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"Sunita Sharma"
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Holly Brown-Borg grad student 2009 University of North Dakota
 (Hippocampal based spatial memory, antioxidant defense and neurogenesis in long-living Ames dwarf mice.)
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Publications

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Sharma S, Darland D, Lei S, et al. (2012) NMDA and kainate receptor expression, long-term potentiation, and neurogenesis in the hippocampus of long-lived Ames dwarf mice. Age (Dordrecht, Netherlands). 34: 609-20
Sharma S, Rakoczy S, Brown-Borg H. (2010) Assessment of spatial memory in mice. Life Sciences. 87: 521-36
Sharma S, Rakoczy S, Dahlheimer K, et al. (2010) The hippocampus of Ames dwarf mice exhibits enhanced antioxidative defenses following kainic acid-induced oxidative stress. Experimental Gerontology. 45: 936-49
Sharma S, Haselton J, Rakoczy S, et al. (2010) Spatial memory is enhanced in long-living Ames dwarf mice and maintained following kainic acid induced neurodegeneration. Mechanisms of Ageing and Development. 131: 422-35
Brown-Borg HM, Rakoczy SG, Sharma S, et al. (2009) Long-living growth hormone receptor knockout mice: potential mechanisms of altered stress resistance. Experimental Gerontology. 44: 10-9
Schrag M, Sharma S, Brown-Borg H, et al. (2008) Hippocampus of Ames dwarf mice is resistant to beta-amyloid-induced tau hyperphosphorylation and changes in apoptosis-regulatory protein levels. Hippocampus. 18: 239-44
Ebadi M, Brown-Borg H, Ren J, et al. (2006) Therapeutic efficacy of selegiline in neurodegenerative disorders and neurological diseases. Current Drug Targets. 7: 1513-29
Ebadi M, Sharma SK, Ghafourifar P, et al. (2005) Peroxynitrite in the pathogenesis of Parkinson's disease and the neuroprotective role of metallothioneins. Methods in Enzymology. 396: 276-98
Ebadi M, Brown-Borg H, El Refaey H, et al. (2005) Metallothionein-mediated neuroprotection in genetically engineered mouse models of Parkinson's disease. Brain Research. Molecular Brain Research. 134: 67-75
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