Expression Modulation of Immune Checkpoint Molecules by Ibrutinib and Everolimus Through STAT3 in MCF-7 Breast Cancer

Mohsen Soltanshahi1,2, Saeid Taghiloo1,2, Hossein Asgarian-Omran3,1

  • 1Department of Immunology, School of Medicine, Mazandaran University of Medical Sciences, Sari, Iran.

Insights

Small-molecule inhibitors targeting AKT, mTOR, and BTK pathways impact immune checkpoint ligand expression in breast cancer cells. Everolimus and ibrutinib reduced PD-L1 and CD155, highlighting STAT3

Area of Science:

  • Oncology
  • Immunology
  • Molecular Biology

Background:

  • Small-molecule inhibitors (SMIs) are effective cancer therapies, but their link to immune evasion is unclear.
  • Immune checkpoints like PD-L1, CD155, and Gal-9 are crucial in tumor immune evasion.
  • AKT, mTOR, and BTK signaling pathways are implicated in cancer progression and immune modulation.

Purpose of the Study:

  • To investigate the association between AKT, mTOR, and BTK pathway inhibitors and immune checkpoint ligand expression.
  • To evaluate the effect of specific SMIs (everolimus, MK-2206, ibrutinib) on PD-L1, CD155, and Gal-9 in breast cancer.
  • To explore the role of STAT3 phosphorylation in mediating these molecular changes.

Main Methods:

  • MCF-7 breast cancer cells were treated with varying doses of everolimus, MK-2206, and ibrutinib.
  • MTT assays determined optimal drug concentrations.
  • Real-time PCR measured mRNA expression of PD-L1, CD155, and Gal-9.
  • Western blotting assessed STAT3 phosphorylation levels.

Main Results:

  • Optimal doses were 200 nM for everolimus, 320 nM for MK-2206, and 2000 nM for ibrutinib.
  • Everolimus and ibrutinib significantly decreased PD-L1 and CD155 mRNA expression.
  • Gal-9 mRNA expression increased with combined everolimus and ibrutinib treatment.
  • Both everolimus and ibrutinib inhibited STAT3 phosphorylation, with a more pronounced effect in combination.

Conclusions:

  • SMIs targeting AKT/mTOR/BTK pathways modulate immune checkpoint ligand expression in breast cancer.
  • STAT3 acts as a critical transcription factor mediating the crosstalk between these signaling pathways and immune checkpoint molecules.
  • Findings suggest potential therapeutic strategies combining SMIs to overcome immune evasion in cancer.

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