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Updated: Jan 23, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Triple-negative breast cancer cell line sensitivity to englerin A identifies a new, targetable subtype
Corena V Grant1, Chase M Carver2, Shayne D Hastings2
1Department of Pharmacology, University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Dr, San Antonio, TX, USA.
Purpose:
Triple-negative breast cancers (TNBCs) represent a heterogeneous group of tumors. The lack of targeted therapies combined with the inherently aggressive nature of TNBCs results in a higher relapse rate and poorer overall survival. We evaluated the heterogeneity of TNBC cell lines for TRPC channel expression and sensitivity to cation-disrupting drugs.
Methods:
The TRPC1/4/5 agonist englerin A was used to identify a group of TNBC cell lines sensitive to TRPC1/4/5 activation and intracellular cation disruption. Quantitative RT-PCR, the sulforhodamine B assay, pharmacological inhibition, and siRNA-mediated knockdown approaches were employed. Epifluorescence imaging was performed to measure intracellular Ca2+ and Na+ levels. Mitochondrial membrane potential changes were monitored by confocal imaging.
Results:
BT-549 and Hs578T cells express high levels of TRPC4 and TRPC1/4, respectively, and are exquisitely, 2000- and 430-fold, more sensitive to englerin A than other TNBC cell lines. While englerin A caused a slow Na+ and nominal Ca2+ accumulation in Hs578T cells, it elicited rapid increases in cytosolic Ca2+ levels that triggered mitochondrial depolarization in BT-549 cells. Interestingly, BT-549 and Hs578T cells were also more sensitive to digoxin as compared to other TNBC cell lines. Collectively, these data reveal TRPC1/4 channels as potential biomarkers of TNBC cell lines with dysfunctional mechanisms of cation homeostasis and therefore sensitivity to cardiac glycosides.
Conclusions:
The sensitivity of BT-549 and Hs578T cells to englerin A and digoxin suggests a subset of TNBCs are highly susceptible to cation disruption and encourages investigation of TRPC1 and TRPC4 as potential new biomarkers of sensitivity to cardiac glycosides.
Insights
Triple-negative breast cancer (TNBC) cells show varied TRPC channel expression. Certain TNBCs, sensitive to cation disruption, may respond to cardiac glycosides like digoxin.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Triple-negative breast cancers (TNBCs) are aggressive with poor survival.
- Lack of targeted therapies necessitates novel treatment strategies.
- TNBC heterogeneity impacts treatment response.
Purpose of the Study:
- Evaluate TRPC channel expression in TNBC cell lines.
- Assess TNBC sensitivity to cation-disrupting drugs.
- Identify potential biomarkers for targeted therapies.
Main Methods:
- Used TRPC1/4/5 agonist englerin A to identify sensitive TNBC cell lines.
- Employed quantitative RT-PCR, sulforhodamine B assay, and siRNA knockdown.
- Measured intracellular Ca2+ and Na+ levels via epifluorescence imaging.
- Monitored mitochondrial membrane potential using confocal imaging.
Main Results:
- BT-549 and Hs578T cells showed high TRPC4 and TRPC1/4 expression, respectively.
- These cells were highly sensitive (2000- and 430-fold) to englerin A.
- Englerin A induced Ca2+ accumulation and mitochondrial depolarization in BT-549 cells.
- BT-549 and Hs578T cells were also more sensitive to digoxin.
Conclusions:
- TRPC1/4 channels are potential biomarkers for TNBCs with disrupted cation homeostasis.
- Sensitivity to englerin A and digoxin suggests a subset of TNBCs are susceptible to cation disruption.
- TRPC1 and TRPC4 warrant investigation as biomarkers for cardiac glycoside sensitivity.
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