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Updated: Aug 30, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Modern Immunotherapy in the Treatment of Triple-Negative Breast Cancer
Jakub Wesolowski1, Anna Tankiewicz-Kwedlo2, Dariusz Pawlak1
1Department of Pharmacodynamics, Faculty of Pharmacy, Medical University in Bialystok, 15-089 Bialystok, Poland.
Abstract:
Triple-Negative Breast Cancer is a subtype of breast cancer characterized by the lack of expression of estrogen receptors, progesterone receptors, as well as human epidermal growth factor receptor 2. This cancer accounts for 15-20% of all breast cancers and is especially common in patients under 40 years of age, as well as with the occurring BRCA1 mutation. Its poor prognosis is reflected in the statistical life expectancy of 8-15 months after diagnosis of metastatic TNBC. So far, the lack of targeted therapy has narrowed therapeutic possibilities to classic chemotherapy. The idea behind the use of humanized monoclonal antibodies, as inhibitors of immunosuppressive checkpoints used by the tumor to escape from immune system control, is to reduce immunotolerance and direct an intensified anti-tumor immune response. An abundance of recent studies has provided numerous pieces of evidence about the safety and clinical benefits of immunotherapy using humanized monoclonal antibodies in the fight against many types of cancer, including TNBC. In particular, phase three clinical trials, such as the IMpassion 130, the KEYNOTE-355 and the KEYNOTE-522 resulted in the approval of immunotherapeutic agents, such as atezolizumab and pembrolizumab by the US Food and Drug Administration in TNBC therapy. This review aims to present the huge potential of immunotherapy using monoclonal antibodies directed against immunosuppressive checkpoints-such as atezolizumab, avelumab, durvalumab, pembrolizumab, nivolumab, cemiplimab, tremelimumab, ipilimumab-in the fight against difficult to treat TNBCs as monotherapy as well as in more advanced combination strategies.
Insights
Immunotherapy with monoclonal antibodies shows promise for treating Triple-Negative Breast Cancer (TNBC). These treatments, including atezolizumab and pembrolizumab, offer new hope against this aggressive cancer subtype.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Triple-Negative Breast Cancer (TNBC) lacks targeted therapies, leading to poor prognosis.
- TNBC disproportionately affects younger women and those with BRCA1 mutations.
- Current treatment is limited to chemotherapy, highlighting the need for novel approaches.
Purpose of the Study:
- To review the potential of immunotherapy using monoclonal antibodies for TNBC.
- To discuss checkpoint inhibitors as a strategy to overcome tumor-induced immune suppression.
- To explore the role of specific agents like atezolizumab and pembrolizumab in TNBC treatment.
Main Methods:
- Review of recent clinical trials (e.g., IMpassion 130, KEYNOTE-355, KEYNOTE-522).
- Analysis of safety and efficacy data for approved immunotherapeutic agents.
- Examination of various monoclonal antibodies targeting immunosuppressive checkpoints.
Main Results:
- Immunotherapy with monoclonal antibodies has demonstrated safety and clinical benefits in TNBC.
- FDA approval of atezolizumab and pembrolizumab validates their use in TNBC therapy.
- Evidence supports immunotherapy's potential in both monotherapy and combination strategies.
Conclusions:
- Monoclonal antibodies targeting immunosuppressive checkpoints offer significant potential against difficult-to-treat TNBC.
- Agents like atezolizumab, avelumab, durvalumab, and pembrolizumab are key players in this evolving field.
- Further research into combination strategies may enhance treatment outcomes for TNBC patients.
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