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Updated: Jul 4, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Repurposing proteasome inhibitors for improved treatment of triple-negative breast cancer
Peter Larsson1,2, Daniella Pettersson2,3, Maxim Olsson4
1Department of Oncology, Institute of Clinical Sciences, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.
Abstract:
Triple-negative breast cancer (TNBC) is associated with poor prognosis and limited treatment options due to the lack of important receptors (estrogen receptor [ER], progesterone receptor [PR], and human epidermal growth factor receptor 2 [HER2]) used for targeted therapy. However, high-throughput in vitro drug screening of cell lines is a powerful tool for identifying effective drugs for a disease. Here, we determine the intrinsic chemosensitivity of TNBC cell lines to proteasome inhibitors (PIs), thereby identifying potentially potent 2-drug combinations for TNBC. Eight TNBC cell lines (BT-549, CAL-148, HCC1806, HCC38, HCC70, MDA-MB-436, MDA-MB-453, and MDA-MB-468) and two controls (MCF-10A and MCF-7) were first exposed to 18 drugs (11 PIs and 7 clinically relevant chemotherapeutic agents) as monotherapy, followed by prediction of potent 2-drug combinations using the IDACombo pipeline. The synergistic effects of the 2-drug combinations were evaluated with SynergyFinder in four TNBC cell lines (CAL-148, HCC1806, HCC38, and MDA-MB-468) and three controls (BT-474, MCF-7, and T47D) in vitro, followed by further evaluation of tumor regression in zebrafish tumor models established using HCC1806 and MCF-7 cells. Monotherapy identified nine effective drugs (bortezomib, carfilzomib, cisplatin, delanzomib, docetaxel, epoxomicin, MLN-2238, MLN-9708, and nedaplatin) across all cell lines. PIs (e.g., bortezomib, delanzomib, and epoxomicin) were highly potent drugs in TNBC cells, of which bortezomib and delanzomib inhibited the chymotrypsin-like activity of the 20 S proteasome by 100% at 10 µM. Moreover, several potent 2-drug combinations (e.g., bortezomib+nedaplatin and epoxomicin+epirubicin) that killed virtually 100% of cells were also identified. Although HCC1806- and MCF-7-derived xenografts treated with bortezomib+nedaplatin and carboplatin+paclitaxel were smaller, HCC1806 cells frequently metastasized to the trunk region. Taken together, we show that PIs used in combination with platinum agents or topoisomerase inhibitors exhibit increased efficiency with almost 100% inhibition in TNBC cell lines, indicating that PIs are therefore promising compounds to use as combination therapy for TNBC.
Insights
Triple-negative breast cancer (TNBC) treatment is challenging. Proteasome inhibitors (PIs) show high potency, and combining them with platinum agents or topoisomerase inhibitors offers a promising strategy for effective TNBC combination therapy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapy options due to absent estrogen receptor (ER), progesterone receptor (PR), and HER2.
- High-throughput drug screening is crucial for identifying effective treatments for TNBC.
Purpose of the Study:
- To assess the chemosensitivity of TNBC cell lines to proteasome inhibitors (PIs).
- To identify potent two-drug combinations for TNBC treatment.
Main Methods:
- Screened 18 drugs (11 PIs, 7 chemotherapeutics) on eight TNBC cell lines and two controls.
- Predicted synergistic drug combinations using the IDACombo pipeline.
- Validated combinations in vitro and in zebrafish tumor models.
Main Results:
- Identified nine effective monotherapy drugs, including several potent PIs like bortezomib and delanzomib.
- Discovered synergistic two-drug combinations (e.g., bortezomib+nedaplatin) achieving nearly 100% cell death.
- Observed reduced tumor size in zebrafish models with combination therapies, though metastasis occurred.
Conclusions:
- Proteasome inhibitors demonstrate significant efficacy in TNBC cell lines.
- Combining PIs with platinum agents or topoisomerase inhibitors enhances treatment efficiency.
- PIs represent a promising therapeutic strategy for TNBC combination therapy.
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