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Detection of Neuritic Plaques in Alzheimer's Disease Mouse Model
Published on: July 26, 2011
The PDAPP mouse model of Alzheimer's disease: locus coeruleus neuronal shrinkage
Dwight C German1, Omar Nelson, Fen Liang
1Department of Psychiatry, University of Texas Southwestern Medical School, Dallas, 75390-9070, USA. dwight.german@utsouthwestern.edu
Abstract:
Alzheimer's disease is characterized by neuronal degeneration in the cerebral cortex and hippocampus and subcortical neuronal degeneration in such nuclei as the locus coeruleus (LC). Transgenic mice overexpressing mutant human amyloid precursor protein V717F, PDAPP mice, develop several Alzheimer's disease-like lesions. The present study sought to determine whether there is also loss of LC noradrenergic neurons or evidence of degenerative changes in these animals. PDAPP hemizygous and wild-type littermate control mice were examined at 23 months of age, at a time when there are numerous amyloid-beta (Abeta) plaques in the neocortex and hippocampus. Tissue sections were stained immunohistochemically with an antibody against tyrosine hydroxylase (TH) to identify LC neurons. Computer imaging procedures were used to count the TH-immunoreactive somata in sections through the rostral-caudal extent of the nucleus. There was no loss of LC neurons in the hemizygous mice. In a second experiment, homozygous PDAPP and wild-type mice were examined, at 2 months and 24 months of age. Again there was no age-related loss of neurons in the homozygous animals. In the portion of the LC where neurons reside that project to the cortex and hippocampus, however, the neurons were decreased in size selectively in the 24-month-old transgenic animals. These data indicate that overt LC cell loss does not occur following abundant overexpression of Abeta peptide. However, the selective size reduction of the LC neuronal population projecting to cortical and hippocampal regions containing Abeta-related neuropathology implies that these cells may be subjected to a retrograde-mediated stress.
Insights
Alzheimer's disease models show no loss of locus coeruleus (LC) neurons. However, LC neurons projecting to affected brain areas shrink, suggesting retrograde stress from amyloid-beta pathology.
Area of Science:
- Neuroscience
- Pathology
- Genetics
Background:
- Alzheimer's disease involves neuronal degeneration in the brain, including the locus coeruleus (LC).
- PDAPP transgenic mice overexpress mutant amyloid precursor protein and develop Alzheimer's-like lesions.
Purpose of the Study:
- To investigate if PDAPP mice exhibit loss or degenerative changes in LC noradrenergic neurons.
- To assess the impact of amyloid-beta (Abeta) overexpression on LC neuron survival and morphology.
Main Methods:
- Examined PDAPP hemizygous and homozygous mice at various ages (2-24 months).
- Used immunohistochemistry with tyrosine hydroxylase (TH) antibody to identify and count LC neurons.
- Employed computer imaging to quantify TH-immunoreactive neurons and assess neuronal size.
Main Results:
- No significant loss of LC neurons was observed in PDAPP mice compared to wild-type controls.
- A selective decrease in the size of LC neurons projecting to the cortex and hippocampus was found in aged PDAPP mice.
- No age-related loss of LC neurons occurred in homozygous PDAPP animals.
Conclusions:
- Abundant amyloid-beta peptide overexpression does not cause overt loss of locus coeruleus neurons.
- Shrinkage of specific LC neuronal populations suggests retrograde stress in response to Abeta-related neuropathology in connected brain regions.
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