Identifying the ErbB/MAPK Signaling Cascade as a Therapeutic Target in Canine Bladder Cancer

Kathryn E Cronise1, Belen G Hernandez1, Daniel L Gustafson1

  • 1Flint Animal Cancer Center, Department of Clinical Sciences (K.E.C., B.G.H., D.L.G., D.L.D.), and Cell and Molecular Biology Graduate Program (K.E.C., D.L.G., D.L.D.), Colorado State University, Fort Collins, Colorado; and University of Colorado Cancer Center, Aurora, Colorado (D.L.G., D.L.D.).

Insights

Targeting the ErbB/MAPK pathway offers a novel treatment for canine bladder cancer (TCC). Combining BRAF or MEK inhibitors with ErbB inhibitors shows promise for this inoperable cancer.

Area of Science:

  • Comparative Oncology
  • Molecular Biology
  • Cancer Therapeutics

Background:

  • Transitional cell carcinoma (TCC) is a common canine cancer, often inoperable and chemotherapy-resistant.
  • BRAF mutations are prevalent in canine TCC, suggesting the mitogen-activated protein kinase (MAPK) pathway as a therapeutic target.
  • Understanding BRAF mutation roles and MAPK pathway activity is crucial for developing effective canine TCC treatments.

Purpose of the Study:

  • To investigate the role of BRAF mutations in canine TCC pathogenesis.
  • To evaluate the efficacy of MAPK pathway inhibition, alone and in combination, for canine TCC treatment.
  • To explore potential resistance mechanisms and novel therapeutic strategies.

Main Methods:

  • Utilized BRAF mutant and wild-type canine TCC cell lines.
  • Assessed MAPK pathway activity via ERK1/2 phosphorylation and gene expression analysis.
  • Tested sensitivity to BRAF and MEK inhibitors (vemurafenib, paradox-breaking BRAF inhibitor, trametinib).
  • Investigated combination therapies with a pan-ErbB inhibitor (sapitinib) using microarray analysis.

Main Results:

  • Constitutive MAPK activity was observed in all TCC cell lines.
  • BRAF mutant cell lines showed limited sensitivity to vemurafenib but responded to a paradox-breaking BRAF inhibitor.
  • All cell lines were sensitive to the MEK inhibitor trametinib.
  • Resistance mechanisms were suggested by ERK1/2 phosphorylation rebound.
  • ErbB receptor and ligand expression was elevated; sapitinib synergized with BRAF/MEK inhibitors.

Conclusions:

  • Combined inhibition of MAPK and ErbB signaling presents a novel therapeutic strategy for canine TCC.
  • Canine TCC serves as a valuable naturally-occurring model for human MAPK-driven cancers.
  • Targeting the ErbB/MAPK cascade offers a promising avenue for treating this challenging canine malignancy.

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