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Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
Drug response-based precision therapeutic selection for tamoxifen-resistant triple-positive breast cancer
Vinod S Bisht1, Deepak Kumar2, Mohd Altaf Najar3
1Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee 247667, India.
Abstract:
Breast cancer adaptability to the drug environment reduces the chemotherapeutic response and facilitates acquired drug resistance. Cancer-specific therapeutics can be more effective against advanced-stage cancer than standard chemotherapeutics. To extend the paradigm of cancer-specific therapeutics, clinically relevant acquired tamoxifen-resistant MCF-7 proteome was deconstructed to identify possible druggable targets (N = 150). Twenty-eight drug inhibitors were used against identified druggable targets to suppress non-resistant (NC) and resistant cells (RC). First, selected drugs were screened using growth-inhibitory response against NC and RC. Seven drugs were shortlisted for their time-dependent (10-12 days) cytotoxic effect and further narrowed to three effective drugs (e.g., cisplatin, doxorubicin, and hydroxychloroquine). The growth-suppressive effectiveness of selected drugs was validated in the complex spheroid model (progressive and regressive). In the progressive model, doxorubicin (RC: 83.64 %, NC: 54.81 %), followed by cisplatin (RC: 76.66 %, NC: 68.94 %) and hydroxychloroquine (RC: 68.70 %, NC: 61.78 %) showed a significant growth-suppressive effect. However, in fully grown regressive spheroid, after 4th drug treatment, cisplatin significantly suppressed RC (84.79 %) and NC (40.21 %), while doxorubicin and hydroxychloroquine significantly suppressed only RC (76.09 and 76.34 %). Our in-depth investigation effectively integrated the expression data with the cancer-specific therapeutic investigation. Furthermore, our three-step sequential drug-screening approach unbiasedly identified cisplatin, doxorubicin, and hydroxychloroquine as an efficacious drug to target heterogeneous cancer cell populations. SIGNIFICANCE STATEMENT: Hormonal-positive BC grows slowly, and hormonal-inhibitors effectively suppress the oncogenesis. However, development of drug-resistance not only reduces the drug-response but also increases the chance of BC aggressiveness. Further, alternative chemotherapeutics are widely used to control advanced-stage BC. In contrast, we hypothesized that, compared to standard chemotherapeutics, cancer-specific drugs can be more effective against resistant-cancer. Although cancer-specific treatment identification is an uphill battle, our work shows proteome data can be used for drug selection. We identified multiple druggable targets and, using ex-vivo methods narrowed multiple drugs to disease-condition-specific therapeutics. We consider that our investigation successfully interconnected the expression data with the functional disease-specific therapeutic investigation and selected drugs can be used for effective resistant treatment with higher therapeutic response.
Insights
Breast cancer develops resistance to drugs, reducing treatment effectiveness. This study identified cisplatin, doxorubicin, and hydroxychloroquine as effective cancer-specific drugs against resistant breast cancer cells using proteome data.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Breast cancer adaptability to drugs leads to acquired resistance and reduced therapeutic response.
- Cancer-specific therapeutics show potential for advanced-stage cancer treatment.
- Understanding drug resistance mechanisms is crucial for developing effective breast cancer therapies.
Purpose of the Study:
- To identify druggable targets in tamoxifen-resistant MCF-7 breast cancer cells.
- To evaluate the efficacy of selected drug inhibitors against resistant and non-resistant cancer cells.
- To validate the effectiveness of identified drugs in a complex spheroid model.
Main Methods:
- Proteome deconstruction of acquired tamoxifen-resistant MCF-7 cells to identify 150 druggable targets.
- Screening of 28 drug inhibitors for growth-inhibitory effects on non-resistant (NC) and resistant cells (RC).
- Validation of effective drugs (cisplatin, doxorubicin, hydroxychloroquine) using time-dependent cytotoxicity and spheroid models.
Main Results:
- Seven drugs were shortlisted, with cisplatin, doxorubicin, and hydroxychloroquine showing significant cytotoxic effects.
- In the progressive spheroid model, doxorubicin, cisplatin, and hydroxychloroquine demonstrated substantial growth suppression in both RC and NC.
- In the regressive spheroid model, cisplatin showed significant suppression of both RC and NC, while doxorubicin and hydroxychloroquine primarily suppressed RC.
Conclusions:
- Proteome data analysis can guide the selection of cancer-specific therapeutics.
- Cisplatin, doxorubicin, and hydroxychloroquine are identified as effective drugs for targeting heterogeneous breast cancer cell populations, including resistant ones.
- The identified drugs hold promise for treating resistant breast cancer with improved therapeutic response.
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