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Updated: Jul 20, 2026

Immunostaining to Visualize Murine Enteric Nervous System Development
Published on: April 29, 2015
Studying the Role of Myenteric Amyloidosis in Gastrointestinal Dysmotility and Enteric Neural Dysfunction Using
Roxanne Fernandes1, Marlene Masino2, Emma Flood1
1Department of Pharmacology & Toxicology, Michigan State University, East Lansing, Michigan, USA.
Background:
The Gastrointestinal (GI) microbiome and gut-brain axis are associated with the progression and pathology of Alzheimer's disease (AD). Amyloid deposition is thought to be a driver of AD, causing synaptic dysfunction and neuronal death in the brain. Chronic constipation is a common gastrointestinal (GI) dysmotility in AD patients, which impacts patient outcomes and quality of life. It is unknown if enteric amyloidosis disrupts myenteric neuron function and causes GI dysmotility.
Methods:
Untreated male and female APP/PS1 (a transgenic murine model of brain amyloidosis) and sex-matched control mice were followed until 12 months of age. A separate cohort of mice was treated with a vehicle or the beta-secretase (BACE1) inhibitor, lanabecestat, starting at 5 months of age until 7 months. GI motility was assessed in all mice by measuring whole GI transit in vivo. Propulsive colonic motility and GI smooth muscle contractions were measured ex vivo. At 7 or 12 months old, amyloidosis in the brain and myenteric plexus was determined by immunohistochemistry or ELISA; the myenteric neural density, including the cholinergic and nitrergic neurons, was evaluated by immune staining and RT-PCR; expression of pro-inflammatory factors in the GI wall was assessed by RT-PCR.
Key Results:
By 7 months of age, male and female APP/PS1 mice developed abundant amyloid plaques in the brain. Aged untreated male APP/PS1 mice also demonstrated Aβ deposition in the colonic myenteric ganglia, which was associated with increased fecal output and faster whole GI transit starting at 4-7 months old, but vehicle- and lanabecestat-treated male APP/PS1 mice had similar GI motility to their non-genetic controls until 7 months old. None of the female APP/PS1 mice showed GI dysmotility or myenteric amyloidosis. Two months of lanabecestat treatment effectively reduced amyloid plaque burden in the brains of female APP/PS1 mice but not in male APP/PS1 mice. Treatment with lanabecestat did not affect myenteric Aβ intensity or GI motility in all APP/PS1 mice. All APP/PS1 mice did not show myenteric neuronal degeneration or inflammation until 12 months old.
Conclusions:
APP/PS1 mice do not recapitulate myenteric amyloidosis persistently and lack the phenotype of constipation observed in human AD patients; these mice should not be considered an adequate murine model for studying the role of myenteric amyloidosis in GI dysmotility. An adequate animal model with myenteric amyloidosis is required for further study.
Insights
This study found that the APP/PS1 mouse model does not accurately replicate the gastrointestinal issues seen in Alzheimer's disease patients. Further research requires a better animal model to understand enteric amyloidosis and gut-brain axis dysfunction.
Area of Science:
- Neuroscience
- Gastroenterology
- Pathology
Background:
- The gut-brain axis and microbiome are linked to Alzheimer's disease (AD) progression.
- Amyloid deposition in the brain drives AD pathology, causing neuronal dysfunction.
- Chronic constipation, a common GI issue in AD patients, impacts quality of life.
Purpose of the Study:
- To investigate if enteric amyloidosis disrupts myenteric neuron function and causes GI dysmotility.
- To evaluate the APP/PS1 mouse model for its relevance to AD-associated GI pathology.
Main Methods:
- Assessed GI motility in APP/PS1 mice and controls using in vivo and ex vivo methods.
- Quantified brain and myenteric amyloid deposition via immunohistochemistry and ELISA.
- Evaluated myenteric neural density and inflammatory markers using immune staining and RT-PCR.
Main Results:
- Male APP/PS1 mice showed brain amyloidosis and myenteric Aβ deposition, with faster GI transit.
- Female APP/PS1 mice did not develop myenteric amyloidosis or GI dysmotility.
- Lanabecestat treatment reduced brain amyloid but did not impact myenteric Aβ or GI motility.
Conclusions:
- APP/PS1 mice do not consistently develop myenteric amyloidosis or the constipation phenotype seen in human AD patients.
- These mice are not adequate models for studying myenteric amyloidosis in GI dysmotility.
- A suitable animal model exhibiting myenteric amyloidosis is needed for future research.

