Combined BRAF, EGFR, and MEK Inhibition in Patients with BRAFV600E-Mutant Colorectal Cancer

Ryan B Corcoran1, Thierry André2, Chloe E Atreya3

  • 1Massachusetts General Hospital Cancer Center and Department of Medicine, Harvard Medical School, Boston, Massachusetts. rbcorcoran@partners.org.

Cancer Discovery
|February 13, 2018
PubMed

Insights

Targeting BRAF, EGFR, and MEK with dabrafenib, panitumumab, and trametinib shows promise for BRAF V600E colorectal cancer. Combination therapy improves efficacy by suppressing MAPK signaling, though resistance mechanisms require further investigation.

Area of Science:

  • Oncology
  • Molecular Biology
  • Clinical Trials

Background:

  • BRAF inhibitor monotherapy shows limited efficacy in BRAF V600E colorectal cancer due to adaptive MAPK reactivation.
  • EGFR-mediated feedback loops contribute to resistance in BRAF-mutant colorectal cancer.

Purpose of the Study:

  • To evaluate the efficacy and safety of combined BRAF and EGFR inhibition with dabrafenib and panitumumab, ± MEK inhibition with trametinib.
  • To assess the impact of combination therapy on MAPK signaling suppression in BRAF V600E colorectal cancer.

Main Methods:

  • A clinical trial involving 142 patients with BRAF V600E colorectal cancer.
  • Treatment arms included dabrafenib + panitumumab (D+P), dabrafenib + trametinib + panitumumab (D+T+P), and trametinib + panitumumab (T+P).
  • Pharmacodynamic analysis of tumor biopsies and serial cell-free DNA analysis were performed.

Main Results:

  • Confirmed response rates were 10% for D+P, 21% for D+T+P, and 0% for T+P.
  • Efficacy of D+T+P correlated with enhanced MAPK signaling suppression.
  • Emergence of KRAS/NRAS mutations was observed upon disease progression.

Conclusions:

  • Combined BRAF, EGFR, and MEK inhibition is a tolerable strategy with promising activity in BRAF V600E colorectal cancer.
  • MAPK pathway inhibition is critical, but strategies must address primary and acquired resistance mechanisms.
  • Further optimization of combination therapies is needed to overcome resistance in BRAF V600E colorectal cancer.

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