Mebendazole prevents distant organ metastases in part by decreasing ITGβ4 expression and cancer stemness

Natalie S Joe1,2, Inês Godet1,3,4, Nubaira Milki3

  • 1Department of Oncology, The Sidney Kimmel Comprehensive Cancer Center, The Johns Hopkins University School of Medicine, Baltimore, MD, 21231, USA.

Insights

Mebendazole (MBZ), an anti-worm drug, shows promise in treating triple-negative breast cancer (TNBC). This study found MBZ effectively reduced tumor growth and metastasis by targeting cancer stem cell properties.

Area of Science:

  • Oncology
  • Pharmacology
  • Cancer Biology

Background:

  • Triple-negative breast cancer (TNBC) is aggressive, lacking targeted therapies.
  • Current TNBC treatments include chemotherapy, surgery, radiation, PARP inhibitors, and immunotherapy.
  • Mebendazole (MBZ), an anthelmintic, has demonstrated preclinical anti-cancer efficacy and low toxicity.

Purpose of the Study:

  • To investigate the efficacy of repurposed mebendazole (MBZ) as a therapeutic agent for triple-negative breast cancer (TNBC).
  • To explore the mechanism of action of MBZ in TNBC, focusing on its effects on cancer stemness.

Main Methods:

  • Assessed MBZ's half-maximal inhibitory concentration (IC50) in TNBC cell lines.
  • Evaluated MBZ's effects on TNBC cell proliferation, apoptosis, and cell cycle progression.
  • Determined MBZ's impact on primary tumor size and metastasis in preclinical models.
  • Investigated MBZ's effect on integrin β4 (ITGβ4) expression and cancer stem cell properties.

Main Results:

  • MBZ exhibited potent anti-proliferative effects and induced apoptosis and G2/M cell cycle arrest in TNBC cells.
  • MBZ significantly reduced primary tumor size and inhibited lung and liver metastasis.
  • MBZ was found to decrease integrin β4 (ITGβ4) expression, a marker associated with cancer stemness.

Conclusions:

  • Mebendazole demonstrates significant therapeutic potential for triple-negative breast cancer, including reducing tumor progression and metastasis.
  • MBZ's novel mechanism involving the reduction of ITGβ4 expression and cancer stem cell properties warrants further investigation.
  • MBZ represents a promising candidate for advancing TNBC therapeutics due to its efficacy and favorable toxicity profile.

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