Translational Neuroscience · 2018 · 28 citations · 32 references
Arginine is one of the most versatile semi-essential amino acids. Further to the primary role in protein biosynthesis, arginine is involved in the urea cycle, and it is a precursor of nitric oxide. Arginine deficiency is associated with neurodegenerative diseases such as Parkinson's, Huntington's and Alzheimer's diseases (AD). In this study, we administer arginine intracerebroventricularly in a murine model of AD and evaluate cognitive functions in a set of behavioral tests. In addition, the effect of arginine on synaptic plasticity was tested electrophysiologically by assessment of the hippocampal long-term potentiation (LTP). The effect of arginine on β amyloidosis was tested immunohistochemically. A role of arginine in the prevention of cytotoxicity and apoptosis was evaluated <i>in vitro</i> on PC-12 cells. The results indicate that intracerebroventricular administration of arginine improves spatial memory acquisition in 3xTg-AD mice, however, without significantly reducing intraneuronal β amyloidosis. Arginine shows little or no impact on LTP and does not rescue LTP deterioration induced by Aβ. Nevertheless, arginine possesses neuroprotective and antiapoptotic properties.
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Triple-Transgenic Model of Alzheimer's Disease with Plaques and Tangles
Salvatore Oddo, Antonella Caccamo, Jason D. Shepherd et al. · Neuron · 2003 · 4.1K citations · Full text
Alzheimer disease in the United States (2010–2050) estimated using the 2010 census
Liesi E. Hebert, Jennifer Weuve, Paul A. Scherr et al. · Neurology · 2013 · 2.6K citations · Full text
Arginine enhances wound healing and lymphocyte immune responses in humans.
Adrian Barbul, Spiros A. Lazarou, David T. Efron et al. · PubMed · 1990 · 439 citations