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.

Abstract

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.