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

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.