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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.
Abstract:
Tumor-targeted therapy with small-molecule inhibitors (SMIs) has been demonstrated to be a highly effective therapeutic strategy for various cancers. However, their possible associations with immune evasion mechanisms remain unknown. This study examined the association of inhibitors of the protein kinase B (AKT), mammalian target of rapamycin (mTOR), and Bruton's tyrosine kinase (BTK) signaling pathways with the expression of immune checkpoint ligands programmed death-ligand 1 (PD-L1), CD155, and galectin-9 (Gal-9) in a breast cancer cell line. MCF-7 cells were treated with everolimus, MK-2206, and ibrutinib. An MTT assay was used to determine the optimal dose for all drugs. A real-time polymerase chain reaction was utilized to measure the mRNA expression of PD-L1, CD155, and Gal-9. The western blot technique was also employed to evaluate the protein expression of the phosphorylated signal transducer and activator of transcription 3 (STAT3). The optimal doses of everolimus, MK-2206, and ibrutinib were observed to be 200, 320, and 2000 nM, respectively. The PD-L1 and CD155 mRNA expression was significantly decreased following the treatment with everolimus and ibrutinib, but not with MK-2206. There were no differences in Gal-9 expression between the single-treated and control groups; however, combined treatment with everolimus and ibrutinib increased its mRNA expression. Everolimus and ibrutinib both inhibited constitutive STAT3 phosphorylation in MCF-7, which was more pronounced in combination treatment. The findings regarding the modulation of PD-L1, CD155, and Gal-9 molecules by SMIs emphasize the crosstalk between the expression of these immune checkpoint molecules and AKT/mTOR/BTK signaling pathways through STAT3 as a critical transcription factor.
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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