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Updated: Feb 7, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Liposomal Irinotecan Achieves Significant Survival and Tumor Burden Control in a Triple Negative Breast Cancer Model
Nicholas Bernards1, Manuela Ventura1, Inga B Fricke1
1TECHNA Institute for the Advancement of Technology for Health , University Health Network , Toronto , Ontario M5G 1L7 , Canada.
Abstract:
Triple negative breast cancer (TNBC) represents a significant therapeutic challenge due to its highly aggressive nature and lack of effective treatment options. Liposomal irinotecan (nal-IRI, ONIVYDE) was approved in 2015 (by the Food and Drug Administration, European Medicines Agency, and Therapeutic Goods Administration) and is a topoisomerase inhibitor indicated, in combination with fluorouracil and leucovorin, for the treatment of patients with metastatic adenocarcinoma of the pancreas after disease progression following gemcitabine-based therapy. This study investigates the potential therapeutic benefit of nal-IRI for the treatment of advanced TNBC in a clinically relevant mouse model of spontaneous metastasis (LM2-4). Female SCID mice were orthotopically inoculated with TNBC LM2-4-luc cells in the lower mammary fat pad. Following primary tumor resection, bioluminescence imaging (BLI) was used to monitor both metastasis formation and spread as well as response to treatment with nal-IRI. Weekly treatment with 10 mg/kg of nal-IRI provided a 4.9-times longer median survival compared to both 50 mg/kg irinotecan treated and untreated animals. The survival benefit was supported by a significant delay in the regrowth of the primary tumor, effective control, and eventual regression of metastases assessed using longitudinal BLI, which was confirmed at the study end point with magnetic resonance (MR) imaging and post-mortem observation. This preclinical investigation demonstrates that, at a five-times lower dose compared to the free drug, liposomal irinotecan provides significant survival benefit and effective management of metastatic disease burden in a clinically relevant model of spontaneous TNBC metastases. These findings support the evaluation of nal-IRI in patients with advanced and metastatic TNBC.
Insights
Liposomal irinotecan (nal-IRI) significantly improved survival in a preclinical triple-negative breast cancer model. This targeted therapy effectively managed metastatic disease, offering a promising new avenue for advanced TNBC treatment.
Area of Science:
- Oncology
- Pharmacology
- Cancer Metastasis
Background:
- Triple-negative breast cancer (TNBC) presents a major therapeutic challenge due to its aggressive nature and limited treatment options.
- Liposomal irinotecan (nal-IRI) is an approved topoisomerase inhibitor for metastatic pancreatic cancer.
Purpose of the Study:
- To investigate the therapeutic potential of liposomal irinotecan (nal-IRI) in treating advanced triple-negative breast cancer (TNBC) with spontaneous metastasis.
- To evaluate nal-IRI's efficacy in a clinically relevant mouse model of TNBC metastasis.
Main Methods:
- Orthotopic inoculation of TNBC LM2-4-luc cells in SCID mice.
- Primary tumor resection followed by bioluminescence imaging (BLI) for monitoring metastasis and treatment response.
- Weekly treatment with 10 mg/kg nal-IRI and comparison with irinotecan and untreated groups.
Main Results:
- Weekly nal-IRI treatment resulted in a 4.9-fold increase in median survival compared to irinotecan and control groups.
- Significant delay in primary tumor regrowth and effective control/regression of metastases observed via BLI, MR imaging, and post-mortem analysis.
- nal-IRI demonstrated efficacy at a five-times lower dose than free irinotecan.
Conclusions:
- Liposomal irinotecan (nal-IRI) shows significant survival benefits and effective management of metastatic disease burden in a preclinical TNBC model.
- These findings support the clinical evaluation of nal-IRI for advanced and metastatic triple-negative breast cancer.
- nal-IRI offers a promising therapeutic strategy for TNBC, addressing a critical unmet need.
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