Research Advances in Drug Resistance Mechanisms to Anti-HER2 Therapy in HER2-Positive Breast Cancer
Chunwei Huang1, Jingyi Kong1, Hangxing Ren1
1Department of Breast Surgery, The First Affiliated Hospital of Ningbo University, Ningbo, China.
Abstract:
HER2-positive breast cancer accounts for 15-20% of all breast cancer cases. Although the development of monoclonal antibodies (e.g., trastuzumab, pertuzumab), tyrosine kinase inhibitors (e.g., lapatinib, pyrotinib), and antibody-drug conjugates (e.g., T-DM1, trastuzumab deruxtecan) has greatly improved patient prognosis, primary or acquired resistance to anti-HER2 therapy remains a major clinical challenge, leading to treatment failure and disease progression. Recent research has elucidated diverse resistance mechanisms, including HER2 signaling pathway aberrations (such as receptor mutations, alternative splicing, and bypass activation), tumor microenvironment remodeling (involving immunosuppressive cells, metabolic reprogramming, and immune checkpoint molecules), and ADC-specific resistance (impaired internalization, lysosomal dysfunction, payload efflux, and ferroptosis blockade). However, existing reviews primarily focus on trastuzumab and classical signaling pathways, with insufficient integration of ADC-specific mechanisms or microenvironmental immune evasion. Furthermore, the translation of mechanistic discoveries into clinical strategies remains weak, and a systematic summary of validated biomarkers (e.g., PIK3CA mutations, PTEN loss, p95HER2, ADAR1, HLA-G) and related clinical trials is lacking. The purpose of this review is threefold: (1) to systematically integrate recent advances in anti-HER2 resistance mechanisms from three perspectives-HER2 signaling abnormalities, tumor microenvironment remodeling, and ADC-specific barriers; (2) to provide an evidence-based framework for target prioritization by categorizing mechanisms according to their validation stage (clinically validated, substantial in vivo evidence, or in vitro studies only); and (3) to summarize current biomarker-driven clinical trials and emerging therapeutic strategies, including combination immunotherapy, CDK4/6 inhibitors, PI3K PROTACs, and cold atmospheric plasma. Ultimately, this review aims to bridge the gap between basic research and clinical practice, offering practical guidance for overcoming anti-HER2 resistance through precision combination strategies in HER2-positive breast cancer.
Insights
Resistance to HER2-targeted therapies in breast cancer is a major challenge. This review integrates resistance mechanisms and clinical strategies to overcome treatment failure in HER2-positive breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- HER2-positive breast cancer affects 15-20% of patients.
- Anti-HER2 therapies have improved prognosis but resistance remains a challenge.
- Current reviews lack integration of ADC resistance and microenvironment factors.
Purpose of the Study:
- To systematically integrate anti-HER2 resistance mechanisms.
- To categorize mechanisms by validation stage for target prioritization.
- To summarize clinical trials and emerging strategies for overcoming resistance.
Main Methods:
- Systematic literature review of resistance mechanisms.
- Categorization of mechanisms based on clinical validation.
- Summary of biomarker-driven clinical trials and therapeutic strategies.
Main Results:
- Resistance mechanisms involve HER2 signaling, tumor microenvironment, and ADC-specific factors.
- A framework for target prioritization based on evidence level is proposed.
- Current clinical trials and novel strategies are identified.
Conclusions:
- Understanding diverse resistance mechanisms is crucial for effective treatment.
- Biomarker-driven approaches and combination therapies are key to overcoming resistance.
- This review provides guidance for precision combination strategies in HER2-positive breast cancer.
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