Tumor-Type Agnostic, Targeted Therapies: BRAF Inhibitors Join the Group

Semir Vranic1, Gargi D Basu2, David W Hall2

  • 1College of Medicine, QU Health, Qatar University, Doha, Qatar; Department of Medical Sciences, Academy of Sciences and Arts of Bosnia and Herzegovina, Sarajevo, Bosnia and Herzegovina. semir.vranic@gmail.com; svranic@qu.edu.qa.

Acta Medica Academica
|February 17, 2023
PubMed

Insights

Tumor-agnostic therapies represent a significant advance in precision cancer medicine, offering targeted treatments across various cancer types based on molecular alterations like BRAF mutations. This approach is expanding rapidly, improving diagnostics and treatment outcomes for patients with specific genetic profiles.

Area of Science:

  • Oncology
  • Precision Medicine
  • Molecular Diagnostics

Background:

  • Precision medicine utilizes tumor biomarkers for diagnosis and therapy guidance.
  • Tumor-agnostic therapies offer a paradigm shift, moving beyond tissue-specific treatments.
  • Advances in understanding molecular alterations drive the development of these novel therapies.

Approach:

  • This review discusses breakthrough advances in tumor-agnostic precision medicine.
  • Focus is placed on BRAF treatment modalities, resistance mechanisms, and diagnostics for BRAF-mutated cancers.
  • The review highlights FDA-approved tumor-agnostic drugs and their indications.

Key Points:

  • Six tumor-agnostic drugs (seven indications) were FDA-approved by October 2022.
  • Approved therapies include pembrolizumab (MSI-H/dMMR, TMB-high), larotrectinib/entrectinib (NTRK fusions), dabrafenib/trametinib (BRAFV600E), and selpercatinib (RET fusions).
  • Tumor-agnostic treatments are approved for specific molecular alterations, irrespective of tumor histology.

Conclusions:

  • Precision cancer medicine has significantly improved cancer diagnostics and treatment efficacy.
  • Tissue type-agnostic drug therapies represent a major advancement in oncology.
  • This approach is rapidly expanding, offering new treatment avenues for patients with shared molecular alterations across different cancer types.

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