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Updated: Jul 30, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Triple-Negative Breast Cancer: Basic Biology and Immuno-Oncolytic Viruses
Michael L Monaco1, Omer A Idris1, Karim Essani1
1Laboratory of Virology, Department of Biological Sciences, Western Michigan University, Kalamazoo, MI 49008, USA.
Abstract:
Triple-negative breast cancer (TNBC) is the most lethal subtype of breast cancer. TNBC diagnoses account for approximately one-fifth of all breast cancer cases globally. The lack of receptors for estrogen, progesterone, and human epidermal growth factor 2 (HER-2, CD340) results in a lack of available molecular-based therapeutics. This increases the difficulty of treatment and leaves more traditional as well as toxic therapies as the only available standards of care in many cases. Recurrence is an additional serious problem, contributing substantially to its higher mortality rate as compared to other breast cancers. Tumor heterogeneity also poses a large obstacle to treatment approaches. No driver of tumor development has been identified for TNBC, and large variations in mutational burden between tumors have been described previously. Here, we describe the biology of six different subtypes of TNBC, based on differential gene expression. Subtype differences can have a large impact on metastatic potential and resistance to treatment. Emerging antibody-based therapeutics, such as immune checkpoint inhibitors, have available targets for small subsets of TNBC patients, leading to partial responses and relatively low overall efficacy. Immuno-oncolytic viruses (OVs) have recently become significant in the pursuit of effective treatments for TNBC. OVs generally share the ability to ignore the heterogeneous nature of TNBC cells and allow infection throughout a treated tumor. Recent genetic engineering has allowed for the enhancement of efficacy against certain tumor types while avoiding the most common side effects in non-cancerous tissues. In this review, TNBC is described in order to address the challenges it presents to potential treatments. The OVs currently described preclinically and in various stages of clinical trials are also summarized, as are their strategies to enhance therapeutic potential.
Insights
Triple-negative breast cancer (TNBC) is a lethal breast cancer subtype lacking targeted therapies. Immuno-oncolytic viruses (OVs) show promise for treating TNBC by overcoming tumor heterogeneity and offering enhanced efficacy.
Area of Science:
- Oncology
- Virology
- Immunotherapy
Background:
- Triple-negative breast cancer (TNBC) is the most aggressive subtype, accounting for 20% of global cases.
- Lack of estrogen, progesterone, and HER-2 receptors limits targeted therapeutic options for TNBC.
- Tumor heterogeneity and high recurrence rates contribute to TNBC's poor prognosis and treatment resistance.
Purpose of the Study:
- To review the biological characteristics of TNBC subtypes and their impact on treatment.
- To explore the potential of immuno-oncolytic viruses (OVs) as a novel therapeutic strategy for TNBC.
- To summarize preclinical and clinical OV advancements for TNBC treatment.
Main Methods:
- Review of scientific literature on TNBC biology, subtypes, and treatment challenges.
- Analysis of gene expression data to identify TNBC subtypes.
- Summary of current preclinical and clinical research on immuno-oncolytic viruses for TNBC.
Main Results:
- TNBC exhibits significant biological heterogeneity across six identified subtypes, influencing metastatic potential and treatment resistance.
- Immune checkpoint inhibitors show limited efficacy in TNBC due to small targetable patient subsets.
- Immuno-oncolytic viruses (OVs) demonstrate potential to overcome TNBC heterogeneity and offer enhanced therapeutic efficacy with reduced side effects.
Conclusions:
- TNBC presents significant treatment challenges due to its aggressive nature and heterogeneity.
- Immuno-oncolytic viruses represent a promising therapeutic avenue for TNBC, with ongoing research focused on enhancing their efficacy and safety.
- Further development and clinical evaluation of OVs are crucial for improving outcomes in triple-negative breast cancer patients.
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