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Updated: Mar 13, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Breast cancer molecular subtypes: from TNBC to QNBC
Jane Date C Hon1, Baljit Singh2, Aysegul Sahin3
1Department of Pathology, Rutgers Robert Wood Johnson Medical School Piscataway, NJ, USA.
Abstract:
Treatment protocols for breast cancer depend predominantly on receptor status with respect to estrogen (estrogen receptor alpha), progesterone (progesterone receptor) and human epidermal growth factor [human epidermal growth factor receptor 2 (HER2)]. The presence of one or more of these receptors suggests that a treatment targeting these pathways might be effective, while the absence of, or in the case of HER2, lack of overexpression of, all of these receptors, termed triple negative breast cancer (TNBC), indicates a need for the more toxic chemotherapy. In an effort to develop targeted therapies for TNBC, it will be necessary to differentiate among specific TNBC subtypes. The subset of TNBC that expresses androgen receptor (AR) has been determined to express genes consistent with a luminal subtype and therefore may be amenable to therapies targeting either AR, itself, or other pathways typical of a luminal subtype. Recent investigations of the AR signal pathway within breast cancer lead to AR as a significant target for breast cancer therapy with several clinical trials currently in progress. The subclass of TNBC that lacks AR, which we have termed quadruple negative breast cancer (QNBC) currently lacks a defined targetable pathway. Unlike AR-positive TNBC, QNBC predominantly exhibits a basal-like molecular subtype. Several subtypes and related pathway proteins are preferentially expressed in QNBC that may serve as effective targets for treatment, such as ACSL4, SKP2 and EGFR. ACSL4 expression has been demonstrated to be inversely correlated with expression of hormone/growth factor receptors and may thus serve as a biomarker for QNBC as well as a target for therapy. In the following review we summarize some of the current efforts to develop alternatives to chemotherapy for TNBC and QNBC.
Insights
Targeted therapies are being developed for triple-negative breast cancer (TNBC) by differentiating subtypes. Androgen receptor (AR)-positive TNBC may respond to AR-targeted treatments, while AR-negative (quadruple negative breast cancer, QNBC) subtypes present new therapeutic targets.
Area of Science:
- Oncology and Molecular Biology
- Breast Cancer Research
- Targeted Therapy Development
Background:
- Breast cancer treatment is guided by estrogen receptor (ER), progesterone receptor (PR), and HER2 status.
- Triple-negative breast cancer (TNBC) lacks these receptors, necessitating chemotherapy.
- Differentiating TNBC subtypes is crucial for developing targeted therapies.
Approach:
- Investigating androgen receptor (AR) as a therapeutic target in a subset of TNBC.
- Identifying novel protein targets like ACSL4, SKP2, and EGFR in AR-negative TNBC (QNBC).
- Exploring ACSL4 as a potential biomarker and therapeutic target for QNBC.
Key Points:
- AR-positive TNBC shares characteristics with luminal subtypes, suggesting AR-targeted or luminal pathway therapies.
- QNBC, lacking AR, exhibits a basal-like subtype with distinct potential therapeutic targets.
- ACSL4 expression correlates inversely with hormone/growth factor receptors, indicating its potential as a QNBC biomarker and therapeutic target.
Conclusions:
- Developing targeted therapies beyond chemotherapy for TNBC subtypes is essential.
- AR-positive TNBC offers a pathway for targeted treatment strategies.
- QNBC presents opportunities for novel therapeutic targets, including ACSL4, SKP2, and EGFR.
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