Parkinson mice show functional and molecular changes in the gut long before motoric disease onset

Manuela Gries1, Anne Christmann1, Steven Schulte1

  • 1Department of Informatics and Microsystems and Technology, University of Applied Science Kaiserslautern, Working Group Enteric Nervous System, 66482, Zweibrücken, Germany.

Abstract

Insights

Parkinson's disease (PD) may begin in the gut. Researchers identified gut motility and molecular changes in pre-symptomatic mice, revealing potential early biomarkers for PD diagnosis before motor symptoms appear.

Area of Science:

  • Neuroscience
  • Gastroenterology
  • Biomarker Discovery

Background:

  • Growing evidence suggests Parkinson's disease (PD) originates in the enteric nervous system (ENS).
  • Lack of early diagnostic biomarkers hinders timely PD treatment interventions.
  • This study investigates early gut pathology in a PD mouse model before overt symptoms.

Purpose of the Study:

  • To identify candidate biomarkers in the gut of pre-symptomatic Parkinson's disease mice.
  • To analyze functional and molecular alterations in the gastrointestinal tract and ENS.
  • To explore potential early diagnostic markers for Parkinson's disease.

Main Methods:

  • Utilized a transgenic A30P-α-synuclein-overexpressing PD mouse model.
  • Assessed gastrointestinal motility, ENS molecular composition, and miRNA expression in pre-symptomatic mice.
  • Employed in vitro ENS cultures to simulate PD-related challenges.

Main Results:

  • Pre-symptomatic PD mice exhibited retarded gut motility and molecular dysregulations in the myenteric plexus.
  • Identified altered levels of neurofilament light chain, VAMP2, calbindin 2, and their regulating miRNAs.
  • In vitro ENS challenges mirrored changes observed in the transgenic animals, validating findings.

Conclusions:

  • Discovered potential biomarkers in the gut for early Parkinson's disease detection.
  • Findings suggest gut alterations precede hallmark PD symptoms.
  • This research offers a novel approach for identifying human PD biomarkers.