Precision medicine for human cancers with Notch signaling dysregulation (Review)

Masuko Katoh1, Masaru Katoh2

  • 1M & M PrecMed, Tokyo 113‑0033, National Cancer Center, Tokyo 104‑0045, Japan.

Insights

Notch signaling plays a dual role in cancer, acting as both an oncogene and tumor suppressor depending on the cancer type and stage. Investigational therapies like antibody-drug conjugates and CAR-Ts show promise for refractory cancers.

Area of Science:

  • Cellular signaling pathways
  • Cancer biology
  • Drug development

Background:

  • Notch receptors (NOTCH1-4) mediate juxtacrine signals via ligands (DLLs, JAGs).
  • Canonical Notch signaling influences transcription of key genes (e.g., MYC, BMI1), while non-canonical signaling affects NF-κB and Rac1.
  • Aberrant Notch activation is implicated in breast cancer, lung cancer, and lymphomas, but inactivated in small-cell lung cancer and squamous cell carcinomas.

Purpose of the Study:

  • To review the complex role of Notch signaling in various cancers.
  • To highlight the development and potential of Notch-targeted therapies.
  • To emphasize the need for advanced AI in optimizing Notch-targeted treatments.

Main Methods:

  • Review of existing literature on Notch signaling in cancer.
  • Analysis of aberrant Notch pathway activation and inactivation in different cancer types.
  • Summary of investigational drugs targeting the Notch pathway, including small-molecule inhibitors and biologics like ADCs and CAR-Ts.

Main Results:

  • Notch signaling exhibits context-dependent oncogenic and tumor-suppressive functions.
  • Loss-of-function NOTCH1 mutations are early in esophageal cancer, while gain-of-function mutations are late in T-cell leukemia and B-cell lymphoma.
  • Antibody-drug conjugates (ADCs) and chimeric antigen receptor-modified T-cells (CAR-Ts) targeting Notch ligands or receptors show therapeutic potential.

Conclusions:

  • Notch signaling's role is complex and cancer-specific.
  • Emerging therapies like Rova-T and CAR-Ts offer new avenues for refractory cancers.
  • Integrating AI is crucial for advancing Notch-targeted cancer therapy.

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