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Published on: April 24, 2013
Neuropeptide Y protects against methamphetamine-induced neuronal apoptosis in the mouse striatum
Nathalie Thiriet1, Xiaolin Deng, Marcello Solinas
1Centre National de la Recherche Scientifique 6187, University of Poitiers, 86000 Poitiers, France.
Abstract:
Methamphetamine (METH) is an illicit drug that causes neuronal apoptosis in the mouse striatum, in a manner similar to the neuronal loss observed in neurodegenerative diseases. In the present study, injections of METH to mice were found to cause the death of enkephalin-positive projection neurons but not the death of neuropeptide Y (NPY)/nitric oxide synthase-positive striatal interneurons. In addition, these METH injections were associated with increased expression of neuropeptide Y mRNA and changes in the expression of the NPY receptors Y1 and Y2. Administration of NPY in the cerebral ventricles blocked METH-induced apoptosis, an effect that was mediated mainly by stimulation of NPY Y2 receptors and, to a lesser extent, of NPY Y1 receptors. Finally, we also found that neuropeptide Y knock-out mice were more sensitive than wild-type mice to METH-induced neuronal apoptosis of both enkephalin- and nitric oxide synthase-containing neurons, suggesting that NPY plays a general neuroprotective role within the striatum. Together, our results demonstrate that neuropeptide Y belongs to the class of factors that maintain neuronal integrity during cellular stresses. Given the similarity between the cell death patterns induced by METH and by disorders such as Huntington's disease, our results suggest that NPY analogs might be useful therapeutic agents against some neurodegenerative processes.
Insights
Neuropeptide Y (NPY) protects against methamphetamine-induced neuronal death in the mouse striatum. NPY analogs may offer therapeutic potential for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Neuropharmacology
- Cellular Biology
Background:
- Methamphetamine (METH) causes striatal neuronal apoptosis, mimicking neurodegenerative disease.
- Specific neuronal populations, like enkephalin-positive projection neurons, are vulnerable to METH toxicity.
Purpose of the Study:
- To investigate the role of neuropeptide Y (NPY) in METH-induced neurotoxicity.
- To explore the therapeutic potential of NPY in mitigating METH-induced neuronal damage.
Main Methods:
- Administration of METH to mice to induce apoptosis.
- Analysis of NPY mRNA and NPY receptor expression.
- Intracerebroventricular administration of NPY to assess neuroprotection.
- Comparison of METH sensitivity in NPY knock-out and wild-type mice.
Main Results:
- METH induced apoptosis in enkephalin-positive neurons but spared NPY/nitric oxide synthase interneurons.
- METH increased NPY mRNA expression and altered NPY receptor Y1 and Y2 levels.
- NPY administration blocked METH-induced apoptosis, primarily via Y2 receptors.
- NPY knock-out mice exhibited increased sensitivity to METH-induced neuronal apoptosis.
Conclusions:
- Neuropeptide Y plays a significant neuroprotective role in the striatum against cellular stress.
- NPY analogs show promise as therapeutic agents for neurodegenerative conditions with similar cell death patterns to METH toxicity.
