4.8 Article

Targeting Axl favors an antitumorigenic microenvironment that enhances immunotherapy responses by decreasing Hif-1α levels

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2023868118

Keywords

AXL; HER2; hypoxia; tumor microenvironment; immunotherapy

Funding

  1. Canadian Institute of Health Research (CIHR) [MOP-142425]
  2. CIHR Foundation [FDN-143281]
  3. Canadian Cancer Society [706878]
  4. Reseau Cancer banque de tumeurs (Fonds de la Recherche du Quebec en Sante (FRQS)
  5. Quebec Breast Cancer Foundation
  6. NIH [NIH-NCI R01 CA212376]
  7. CIHR Doctoral studentship
  8. FRQS Doctoral scholarship

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Inhibition of Axl leads to reduction of hypoxia-induced EMT, invasion, and cytokine production, creating a favorable environment for immunotherapy and reducing metastatic burden in HER2(+) breast cancer.
Hypoxia is an important phenomenon in solid tumors that contributes to metastasis, tumor microenvironment (TME) deregulation, and resistance to therapies. The receptor tyrosine kinase AXL is an HIF target, but its roles during hypoxic stress leading to the TME deregulation are not well defined. We report here that the mammary gland-specific deletion of Axl in a HER2(+) mouse model of breast cancer leads to a normalization of the blood vessels, a proinflammatory TME, and a reduction of lung metastases by dampening the hypoxic response in tumor cells. During hypoxia, interfering with AXL reduces HIF-1 alpha levels altering the hypoxic response leading to a reduction of hypoxia-induced epithelial-to-mesenchymal transition (EMT), invasion, and production of key cytokines for macrophages behaviors. These observations suggest that inhibition of Axl generates a suitable setting to increase immunotherapy. Accordingly, combining pharmacological inhibition of Axl with anti-PD-1 in a preclinical model of HER2(+) breast cancer reduces the primary tumor and metastatic burdens, suggesting a potential therapeutic approach to manage HER2(+) patients whose tumors present high hypoxic features.

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