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Updated: Jan 16, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Neoantigen-Driven Immunotherapy in Triple-Negative Breast Cancer: Emerging Strategies and Clinical Potential
Peter A Shatalov1, Anna A Bukaeva1, Egor M Veselovsky1
1National Medical Research Radiological Centre of the Ministry of Health of the Russian Federation, 249036 Obninsk, Russia.
Abstract:
Triple-negative breast cancer (TNBC) is one of the most aggressive subtypes of breast cancer (BC), comprising approximately 20% of newly diagnosed BC cases. The poor prognosis, high recurrence rates, and inefficacy of hormone-based therapies make TNBC one of the greatest challenges in contemporary oncology. The unique immunological features of TNBC, including relatively high tumor mutational burden, abundance of tumor-infiltrating lymphocytes, and elevated PD-L1 expression, offer a wide range of opportunities for immunotherapeutic approaches, of which the most progressive and promising are neoantigen-driven ones. This review examines the current landscape of neoantigen-based therapeutic approaches in TNBC treatment, spanning from discovery methodologies to clinical applications. We provide a critical analysis of the tumor microenvironment (TME) in TNBC, highlighting the balance between its immunoactivating (CD8+ T-cells, dendritic cells) and immunosuppressive (regulatory T-cells, M2 macrophages) components as the key determinant of therapeutic success, as well as reviewing the emerging approaches to TME reprogramming and recruiting in favor of better outcomes. We also present state-of the-art methods in neoantigen identification and prioritization, covering the landscape of technological platforms and prediction algorithms, addressing the existing accuracy limitations along with emerging computational solutions, and comprehensively discussing the TNBC neoantigen spectrum. Our analysis shows the strong domination of patient-specific ("private") neoantigens over shared variants in the TNBC, with TP53 as the only gene with recurrent variants. Finally, we extensively cover neoantigen-recruiting therapeutic modalities including adoptive cell therapies, personalized vaccine platforms (peptide-based, mRNA/DNA vaccines, dendritic cell vaccines), and oncolytic viruses-based approaches. Our study of current clinical trials demonstrates the substantial gap between early proof-of-concept experiments and further applicability of neoantigen-driven therapies. The major challenges hampering the success of such methods include neoantigen prediction inaccuracy rates, high manufacturing costs, and time consumption. Promising ways to overcome these difficulties include the development of combinational strategies, TME modeling and modifying, and improvement of the therapy delivery properties, along with the optimization of production workflows and cost-effectiveness of vaccine development.
Insights
Neoantigen-based immunotherapies show promise for triple-negative breast cancer (TNBC), an aggressive cancer subtype. Challenges include prediction accuracy and cost, but combinational strategies and TME modification offer future solutions.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Triple-negative breast cancer (TNBC) is an aggressive breast cancer subtype with poor prognosis.
- Current therapies are limited, necessitating novel treatment strategies.
- TNBC's unique immunological features present opportunities for immunotherapy.
Purpose of the Study:
- To review neoantigen-based therapeutic approaches for TNBC.
- To analyze the tumor microenvironment (TME) and its role in therapeutic success.
- To discuss methods for neoantigen identification, prioritization, and therapeutic modalities.
Main Methods:
- Review of current literature on neoantigen-based therapies in TNBC.
- Analysis of tumor microenvironment components and their impact.
- Examination of neoantigen identification technologies and prediction algorithms.
- Discussion of therapeutic modalities including adoptive cell therapies and personalized vaccines.
Main Results:
- TNBC is characterized by patient-specific neoantigens, with TP53 being a recurrently mutated gene.
- The balance of immunoactivating and immunosuppressive cells in the TME is crucial for treatment outcomes.
- Current clinical trials show a gap between proof-of-concept and broad applicability due to prediction inaccuracies, cost, and time.
Conclusions:
- Neoantigen-driven immunotherapies hold significant potential for TNBC treatment.
- Overcoming challenges requires combinational strategies, TME modulation, and optimized production workflows.
- Further research into cost-effective and accurate neoantigen identification is essential.
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