Proteomic Analysis Identifies Multiple Mechanisms of 5-Fluorouracil-Induced Gut Mucositis in Mice

Sergey M Ivanov1,2, Victor G Zgoda1, Valeria A Isakova3

  • 1Institute of Biomedical Chemistry, 119121 Moscow, Russia.

Cancers
|December 17, 2024
PubMed

Insights

This study reveals the molecular mechanisms behind 5-fluorouracil (5-FU)-induced gut mucositis in mice. Understanding these pathways, including insulin signaling, is key to developing protective strategies against this common chemotherapy side effect.

Area of Science:

  • Gastroenterology
  • Oncology
  • Molecular Biology

Background:

  • Gastrointestinal mucosa damage is a significant side effect of the anticancer drug 5-fluorouracil (5-FU).
  • Understanding the molecular pathogenesis of 5-FU-induced gut mucositis is crucial for developing prophylactic strategies.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying 5-FU-induced gut mucositis.
  • To identify key proteins and pathways involved in chemotherapy-induced gastrointestinal damage.

Main Methods:

  • Intestinal specimens from Balb/c mice treated with 5-FU were analyzed.
  • Proteomic analysis and bioinformatics tools were employed to identify differentially expressed proteins and regulatory networks.

Main Results:

  • 5-FU treatment caused diarrhea, weight loss, and morphological lesions in the ileum and colon.
  • Proteomic analysis identified differentially expressed proteins, including those involved in insulin signaling (IGF-1, IRS-1), 14-3-3γ, and ephrin B2 tyrosine kinase.
  • These molecular changes were observed in both the ileum and colon, indicating a common response across the gut.

Conclusions:

  • A hierarchical network of gut injury mechanisms contributes to 5-FU-induced mucositis.
  • The insulin pathway and specific proteins like 14-3-3γ and ephrin B2 tyrosine kinase play significant roles in 5-FU-induced gastrointestinal damage.