Harnessing Induced Essentiality: Targeting Carbonic Anhydrase IX and Angiogenesis Reduces Lung Metastasis of Triple

Eva-Maria E Hedlund1,2, Paul C McDonald1, Oksana Nemirovsky1

  • 1Department of Integrative Oncology, BC Cancer Research Centre, Vancouver, British Columbia, V5Z 1L3, Canada.

Cancers
|July 20, 2019
PubMed

Insights

Targeting Carbonic Anhydrase IX (CAIX) with SLC-0111 reduced metastasis in triple-negative breast cancer (TNBC). Combining CAIX and anti-angiogenic therapy shows promise for treating aggressive TNBC.

Area of Science:

  • Oncology
  • Cancer Biology
  • Pharmacology

Background:

  • Triple-negative breast cancer (TNBC) is aggressive, metastatic, and drug-resistant, with limited therapeutic options.
  • Anti-angiogenic therapies show limited success in systemic breast cancer, potentially due to increased hypoxia and metastasis.
  • Hypoxia upregulates Carbonic Anhydrase IX (CAIX), crucial for hypoxic tumor cell survival.

Purpose of the Study:

  • To investigate the efficacy of combining CAIX inhibition and anti-angiogenic therapy in a TNBC model.
  • To assess the impact on tumor growth, hypoxia, and metastasis in vivo.

Main Methods:

  • Utilized the highly metastatic, CAIX-positive MDA-MB-231 LM2-4 orthotopic model of TNBC.
  • Administered a CAIX inhibitor (SLC-0111) and/or sunitinib (anti-angiogenic agent).
  • Evaluated primary tumor growth, vascular density, permeability, hypoxia, CAIX expression, and metastatic burden.

Main Results:

  • SLC-0111 significantly reduced overall metastatic burden, primary tumor vascular density, and permeability.
  • Sunitinib increased hypoxia and CAIX expression, failing to inhibit metastasis.
  • Combination therapy significantly reduced primary tumor growth and sunitinib-induced lung metastasis.

Conclusions:

  • Targeting CAIX with SLC-0111 effectively reduces metastasis in a TNBC model.
  • Combined targeting of angiogenesis and hypoxia effectors is a promising strategy for TNBC treatment.
  • This combinatorial approach may overcome limitations of current therapies for aggressive breast cancer.

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