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Targeting AR-positive breast cancer cells via drug repurposing approach
Parijat Dutta1, Plaboni Sen1, Thirukumaran Kandasamy1
1Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati-39, Assam, India.
Abstract:
Androgen Receptor (AR) is overexpressed in almost all the molecular subtypes of breast cancer. Besides aiding the tumorigenic environment of cancer by abnormal cell proliferation, AR also takes part in promoting cancer signaling pathways, thereby promoting aggressiveness. In this study, AR was selected as the target protein in breast cancer cells. Following this, a library of 1293 FDA-approved drugs was screened via molecular docking, MD simulation, and MMPBSA binding energy. Amongst the library of compounds, Adapalene exhibited the least binding energy of (-10.2 kCal/mol) in comparison to that of the chosen reference compound, Nilutamide (-8.6 kCal/mol). Furthermore, the in vitro efficacy of Adapalene was also determined in two different breast cancer cell lines such as MCF7 (AR-positive/ER-positive) and MDA-MB-231 (AR negative/TNBC). Initially, the cell viability assay (MTT) was performed, which endowed us with a lesser IC50 value of Adapalene in comparison to Nilutamide in both cell lines. The IC50 of Adapalene was found to be 12 μM and 39.4 μM in MCF7 and MDA-MB-231 cells, respectively. Furthermore, Adapalene also induced cellular ROS and apoptosis by 3.5-fold and 26.58% in MCF7 cells. However, the overall effect of Adapalene was significantly lower in the case of MDA-MB-231 cell lines, which could be attributed to its inherent nature of the absence of hormone receptors. Conclusively, Adapalene possesses greater therapeutic efficacy in comparison to the control drug, thereby hinting towards the potential use of Adapalene in the treatment of AR-positive breast cancer.
Insights
Adapalene shows promise for treating androgen receptor-positive breast cancer. This study found Adapalene more effective than Nilutamide in reducing cancer cell viability and inducing apoptosis in vitro.
Area of Science:
- Oncology
- Pharmacology
- Computational Chemistry
Background:
- Androgen Receptor (AR) is overexpressed in most breast cancer subtypes, promoting tumor growth and aggressiveness.
- AR plays a crucial role in cancer signaling pathways, contributing to disease progression.
Purpose of the Study:
- To identify FDA-approved drugs targeting the Androgen Receptor (AR) in breast cancer.
- To evaluate the therapeutic potential of Adapalene against AR-positive breast cancer.
Main Methods:
- Screening of 1293 FDA-approved drugs using molecular docking, molecular dynamics (MD) simulation, and MMPBSA binding energy calculations.
- In vitro efficacy assessment of Adapalene in MCF7 (AR-positive) and MDA-MB-231 (AR-negative) breast cancer cell lines using MTT assays, ROS induction, and apoptosis analysis.
Main Results:
- Adapalene demonstrated superior binding energy (-10.2 kCal/mol) compared to Nilutamide (-8.6 kCal/mol).
- Adapalene exhibited lower IC50 values (12 μM in MCF7, 39.4 μM in MDA-MB-231) than Nilutamide.
- Adapalene significantly induced ROS (3.5-fold) and apoptosis (26.58%) in MCF7 cells, with a lesser effect in MDA-MB-231 cells.
Conclusions:
- Adapalene displays greater therapeutic efficacy than the reference drug, Nilutamide, in AR-positive breast cancer models.
- These findings suggest Adapalene as a potential therapeutic agent for AR-positive breast cancer treatment.
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