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Updated: Dec 10, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Perspectives on Triple-Negative Breast Cancer: Current Treatment Strategies, Unmet Needs, and Potential Targets for
Gagan K Gupta1, Amber L Collier2, Dasom Lee3
1Leroy T. Canoles Jr. Cancer Research Center, Department of Microbiology and Molecular Cell Biology, Eastern Virginia Medical School, Norfolk, VA 23501, USA.
Abstract:
Triple-negative breast cancer (TNBC), characterized by the absence or low expression of estrogen receptor (ER), progesterone receptor (PR), and human epidermal growth factor receptor (HER2), is the most aggressive subtype of breast cancer. TNBC accounts for about 15% of breast cancer cases in the U.S., and is known for high relapse rates and poor overall survival (OS). Chemo-resistant TNBC is a genetically diverse, highly heterogeneous, and rapidly evolving disease that challenges our ability to individualize treatment for incomplete responders and relapsed patients. Currently, the frontline standard chemotherapy, composed of anthracyclines, alkylating agents, and taxanes, is commonly used to treat high-risk and locally advanced TNBC. Several FDA-approved drugs that target programmed cell death protein-1 (Keytruda) and programmed death ligand-1 (Tecentriq), poly ADP-ribose polymerase (PARP), and/or antibody drug conjugates (Trodelvy) have shown promise in improving clinical outcomes for a subset of TNBC. These inhibitors that target key genetic mutations and specific molecular signaling pathways that drive malignant tumor growth have been used as single agents and/or in combination with standard chemotherapy regimens. Here, we review the current TNBC treatment options, unmet clinical needs, and actionable drug targets, including epidermal growth factor (EGFR), vascular endothelial growth factor (VEGF), androgen receptor (AR), estrogen receptor beta (ERβ), phosphoinositide-3 kinase (PI3K), mammalian target of rapamycin (mTOR), and protein kinase B (PKB or AKT) activation in TNBC. Supported by strong evidence in developmental, evolutionary, and cancer biology, we propose that the K-RAS/SIAH pathway activation is a major tumor driver, and SIAH is a new drug target, a therapy-responsive prognostic biomarker, and a major tumor vulnerability in TNBC. Since persistent K-RAS/SIAH/EGFR pathway activation endows TNBC tumor cells with chemo-resistance, aggressive dissemination, and early relapse, we hope to design an anti-SIAH-centered anti-K-RAS/EGFR targeted therapy as a novel therapeutic strategy to control and eradicate incurable TNBC in the future.
Insights
Triple-negative breast cancer (TNBC) is aggressive and hard to treat. Targeting the K-RAS/SIAH pathway offers a new strategy to combat chemo-resistant TNBC and improve patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Triple-negative breast cancer (TNBC) is an aggressive subtype with high relapse rates and poor survival.
- Chemo-resistant TNBC presents significant challenges due to its genetic diversity and rapid evolution.
- Current treatments include standard chemotherapy and targeted therapies like PD-1/PD-L1 inhibitors, PARP inhibitors, and antibody-drug conjugates.
Purpose of the Study:
- To review current TNBC treatment options and identify unmet clinical needs.
- To explore actionable drug targets, including EGFR, VEGF, AR, ERβ, PI3K, mTOR, and AKT.
- To propose the K-RAS/SIAH pathway as a novel therapeutic target for TNBC.
Main Methods:
- Review of current literature on TNBC treatment strategies and molecular pathways.
- Analysis of developmental, evolutionary, and cancer biology evidence supporting K-RAS/SIAH pathway involvement.
- Proposal of a targeted therapy strategy centered on anti-SIAH and anti-K-RAS/EGFR.
Main Results:
- The K-RAS/SIAH pathway activation is identified as a major driver of TNBC.
- SIAH is proposed as a novel drug target, prognostic biomarker, and tumor vulnerability.
- Persistent K-RAS/SIAH/EGFR pathway activation contributes to chemo-resistance, dissemination, and early relapse in TNBC.
Conclusions:
- The K-RAS/SIAH pathway is a critical target for overcoming TNBC chemo-resistance.
- Targeting SIAH offers a promising therapeutic strategy for TNBC.
- Developing anti-SIAH-centered anti-K-RAS/EGFR therapy could lead to novel treatments for incurable TNBC.
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