The dual role of the Notch signaling pathway in digestive system cancers

Dairong Xiang1,2, Tuokai Wang1,2, Shihui Wei1,2

  • 1State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, National Clinical Research Center for Infectious Diseases, China-Singapore Belt and Road Joint Laboratory on Infection Research and Drug Development, National Medical Center for Infectious Diseases, Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China.

PubMed

Insights

The Notch signaling pathway has dual roles in digestive cancers, acting as both an oncogene and tumor suppressor. Understanding its complex functions is key for developing targeted therapies for esophageal, gastric, liver, pancreatic, and colorectal cancers.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • The Notch signaling pathway is crucial for tissue homeostasis.
  • It exhibits context-dependent dual roles (oncogene/tumor suppressor) in digestive system cancers.

Purpose of the Study:

  • To explore the varied functions of Notch signaling across esophageal, gastric, liver, pancreatic, and colorectal cancers.
  • To highlight therapeutic challenges and future strategies for targeting Notch signaling in digestive cancers.

Main Methods:

  • Review and synthesis of existing literature on Notch signaling in digestive system cancers.
  • Analysis of Notch pathway components (e.g., DLL4/Notch1, Jag1/Notch2) and their roles.

Main Results:

  • Notch signaling shows differential roles, potentially inhibiting then promoting tumors (esophageal, pancreatic) or driving/suppressing growth (liver).
  • In colon cancer, it aids immune evasion but can enhance anti-tumor immunity with specific mutations.
  • Broad-spectrum inhibitors (GSIs) have side effects due to pathway complexity.

Conclusions:

  • The dual roles of Notch signaling necessitate precision medicine approaches.
  • Future strategies include subtype-specific inhibitors, biomarkers, and combination therapies targeting the tumor microenvironment.

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