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Nicotinic receptors modulate antitumor therapy response in triple negative breast cancer cells
Alejandro Español1, Yamila Sanchez2, Agustina Salem2
1Laboratory of Immunopharmacology and Tumor Biology, CEFYBO CONICET University of Buenos Aires, Buenos Aires C1121ABG, Argentina. aespan_1999@yahoo.com.
Background:
Triple negative breast cancer is more aggressive than other breast cancer subtypes and constitutes a public health problem worldwide since it has high morbidity and mortality due to the lack of defined therapeutic targets. Resistance to chemotherapy complicates the course of patients' treatment. Several authors have highlighted the participation of nicotinic acetylcholine receptors (nAChR) in the modulation of conventional chemotherapy treatment in cancers of the airways. However, in breast cancer, less is known about the effect of nAChR activation by nicotine on chemotherapy treatment in smoking patients.
Aim:
To investigate the effect of nicotine on paclitaxel treatment and the signaling pathways involved in human breast MDA-MB-231 tumor cells.
Methods:
Cells were treated with paclitaxel alone or in combination with nicotine, administered for one or three 48-h cycles. The effect of the addition of nicotine (at a concentration similar to that found in passive smokers' blood) on the treatment with paclitaxel (at a therapeutic concentration) was determined using the 3-(4,5 dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay. The signaling mediators involved in this effect were determined using selective inhibitors. We also investigated nAChR expression, and ATP "binding cassette" G2 drug transporter (ABCG2) expression and its modulation by the different treatments with Western blot. The effect of the treatments on apoptosis induction was determined by flow cytometry using annexin-V and 7AAD markers.
Results:
Our results confirmed that treatment with paclitaxel reduced MDA-MB-231 cell viability in a concentration-dependent manner and that the presence of nicotine reversed the cytotoxic effect induced by paclitaxel by involving the expression of functional α7 and α9 nAChRs in these cells. The action of nicotine on paclitaxel treatment was linked to modulation of the protein kinase C, mitogen-activated protein kinase, extracellular signal-regulated kinase, and NF-κB signaling pathways, and to an up-regulation of ABCG2 protein expression. We also detected that nicotine significantly reduced the increase in cell apoptosis induced by paclitaxel treatment. Moreover, the presence of nicotine reduced the efficacy of paclitaxel treatment administered in three cycles to MDA-MB-231 tumor cells.
Conclusion:
Our findings point to nAChRs as responsible for the decrease in the chemotherapeutic effect of paclitaxel in triple negative tumors. Thus, nAChRs should be considered as targets in smoking patients.
Insights
Nicotine reduces paclitaxel chemotherapy effectiveness in triple-negative breast cancer by activating nicotinic acetylcholine receptors (nAChRs). These receptors up-regulate ABCG2 and modulate key signaling pathways, decreasing apoptosis and tumor cell death.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Triple-negative breast cancer (TNBC) is aggressive with high mortality due to limited therapeutic targets.
- Chemotherapy resistance is a major challenge in TNBC treatment.
- Nicotinic acetylcholine receptors (nAChRs) role in breast cancer chemotherapy is understudied.
Purpose of the Study:
- To investigate nicotine's effect on paclitaxel treatment in human breast MDA-MB-231 tumor cells.
- To identify signaling pathways involved in nicotine's modulation of chemotherapy.
- To assess nAChR and ABCG2 expression and their role in treatment response.
Main Methods:
- Cell viability assays (MTT) to determine paclitaxel and nicotine effects.
- Western blot to analyze nAChR, ABCG2, and signaling pathway protein expression.
- Flow cytometry to measure apoptosis induction.
Main Results:
- Nicotine reversed paclitaxel's cytotoxic effect by activating α7 and α9 nAChRs.
- Nicotine modulated PKC, MAPK, ERK, and NF-κB pathways and up-regulated ABCG2.
- Nicotine reduced paclitaxel-induced apoptosis and decreased treatment efficacy.
Conclusions:
- nAChRs mediate reduced paclitaxel efficacy in triple-negative breast cancer.
- Targeting nAChRs may be a strategy for treating smoking patients with TNBC.
- Nicotine's presence necessitates re-evaluation of chemotherapy in smokers.
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