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Updated: Feb 5, 2026

An Orthotopic Mouse Model of Spontaneous Breast Cancer Metastasis
Published on: August 14, 2016
NOTCH3 expression is linked to breast cancer seeding and distant metastasis
Alexey A Leontovich1, Mohammad Jalalirad2, Jeffrey L Salisbury3
1Department of Biomedical Statistics and Informatics, Mayo Clinic College of Medicine, 200 First Street SW, Rochester, MN, USA.
Background:
Development of distant metastases involves a complex multistep biological process termed the invasion-metastasis cascade, which includes dissemination of cancer cells from the primary tumor to secondary organs. NOTCH developmental signaling plays a critical role in promoting epithelial-to-mesenchymal transition, tumor stemness, and metastasis. Although all four NOTCH receptors show oncogenic properties, the unique role of each of these receptors in the sequential stepwise events that typify the invasion-metastasis cascade remains elusive.
Methods:
We have established metastatic xenografts expressing high endogenous levels of NOTCH3 using estrogen receptor alpha-positive (ERα+) MCF-7 breast cancer cells with constitutive active Raf-1/mitogen-associated protein kinase (MAPK) signaling (vMCF-7Raf-1) and MDA-MB-231 triple-negative breast cancer (TNBC) cells. The critical role of NOTCH3 in inducing an invasive phenotype and poor outcome was corroborated in unique TNBC cells resulting from a patient-derived brain metastasis (TNBC-M25) and in publicly available claudin-low breast tumor specimens collected from participants in the Molecular Taxonomy of Breast Cancer International Consortium database.
Results:
In this study, we identified an association between NOTCH3 expression and development of metastases in ERα+ and TNBC models. ERα+ breast tumor xenografts with a constitutive active Raf-1/MAPK signaling developed spontaneous lung metastases through the clonal expansion of cancer cells expressing a NOTCH3 reprogramming network. Abrogation of NOTCH3 expression significantly reduced the self-renewal and invasive capacity of ex vivo breast cancer cells, restoring a luminal CD44low/CD24high/ERαhigh phenotype. Forced expression of the mitotic Aurora kinase A (AURKA), which promotes breast cancer metastases, failed to restore the invasive capacity of NOTCH3-null cells, demonstrating that NOTCH3 expression is required for an invasive phenotype. Likewise, pharmacologic inhibition of NOTCH signaling also impaired TNBC cell seeding and metastatic growth. Significantly, the role of aberrant NOTCH3 expression in promoting tumor self-renewal, invasiveness, and poor outcome was corroborated in unique TNBC cells from a patient-derived brain metastasis and in publicly available claudin-low breast tumor specimens.
Conclusions:
These findings demonstrate the key role of NOTCH3 oncogenic signaling in the genesis of breast cancer metastasis and provide a compelling preclinical rationale for the design of novel therapeutic strategies that will selectively target NOTCH3 to halt metastatic seeding and to improve the clinical outcomes of patients with breast cancer.
Insights
NOTCH3 signaling drives breast cancer metastasis by promoting cell invasion and self-renewal. Targeting NOTCH3 could halt cancer spread and improve patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Distant metastases develop through the invasion-metastasis cascade, involving cancer cell dissemination.
- NOTCH signaling is crucial for epithelial-to-mesenchymal transition, tumor stemness, and metastasis.
- The specific roles of individual NOTCH receptors in metastasis remain unclear.
Purpose of the Study:
- To investigate the role of NOTCH3 in breast cancer metastasis.
- To determine if NOTCH3 is essential for the invasive phenotype and poor outcomes.
Main Methods:
- Established metastatic xenografts using ERα+ MCF-7 and MDA-MB-231 triple-negative breast cancer (TNBC) cells with constitutive active Raf-1/MAPK signaling.
- Analyzed NOTCH3 expression in patient-derived TNBC brain metastasis and claudin-low breast tumor specimens.
Main Results:
- Identified an association between NOTCH3 expression and metastasis in both ERα+ and TNBC models.
- NOTCH3 promoted lung metastasis via clonal expansion and reprogramming networks.
- NOTCH3 abrogation reduced cancer cell self-renewal and invasiveness, restoring a luminal phenotype.
- NOTCH3 expression was essential for invasive capacity; AURKA overexpression could not rescue NOTCH3-null cells.
- NOTCH inhibition impaired TNBC cell seeding and metastatic growth.
Conclusions:
- NOTCH3 oncogenic signaling is key in breast cancer metastasis initiation.
- Targeting NOTCH3 offers a therapeutic strategy to prevent metastatic seeding and improve patient outcomes.
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