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Updated: Feb 19, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
CD44v9 as a therapeutic target for antibody-drug conjugate in advanced breast cancer
Dileep R Reddy1, McKenna E Flynn2, Yasuaki Anami3
1Preclinical Core, University of Hawai'i Cancer Center, Honolulu, HI, USA; Cancer Biology Program, University of Hawai'i Cancer Center, Honolulu, HI, USA.
Abstract:
Antibody-drug conjugates (ADCs) have revolutionized breast cancer therapy. HER2 is the only validated biomarker guiding ADC therapy in breast cancer. However, their clinical benefit remains confined to HER2- and TROP2-targeted therapies. Tumor heterogeneity and acquired resistance often limit durable responses, underscoring the need for novel, tumor-specific ADC targets. CD44 variant isoform 9 (CD44v9), a splice variant of the CD44 family, is largely absent in normal tissues but enriched in aggressive breast cancers, where it contributes to stemness, redox regulation, and therapy resistance. In this study, we developed a chimeric monoclonal antibody against CD44v9 (clone SUM24.1, IgG1) and conjugated it to the microtubule inhibitor monomethyl auristatin F (MMAF). CD44v9 expression was analyzed by immunohistochemistry in breast cancer and normal tissues. Binding, internalization, and cytotoxicity of anti-CD44v9-MMAF were assessed in triple-negative, inflammatory, and ADC-resistant breast cancer models. CD44v9 was abundantly expressed in breast cancer but absent in most normal tissues, including peripheral blood mononuclear cells. The anti-CD44v9 antibody exhibited strong and specific binding with efficient internalization, supporting selective payload delivery. Anti-CD44v9-MMAF demonstrated potent, antigen-dependent cytotoxicity in vitro and dose-dependent tumor inhibition in vivo, with minimal systemic toxicity. Notably, CD44v9 expression persisted in trastuzumab deruxtecan-, sacituzumab govitecan-, and T-DM1-resistant models, which remained sensitive to CD44v9-targeted therapy. Collectively, these findings establish CD44v9 as a tumor-specific and clinically actionable ADC target in advanced breast cancer and provide a strong preclinical rationale for the development of CD44v9-directed ADCs for patients with treatment-refractory disease.
Insights
Researchers identified CD44 variant isoform 9 (CD44v9) as a promising new target for antibody-drug conjugates (ADCs) in breast cancer. This novel target shows efficacy even in resistant cases, offering hope for advanced disease treatment.
Area of Science:
- Oncology
- Molecular Biology
- Immunotherapy
Background:
- Antibody-drug conjugates (ADCs) have transformed breast cancer treatment, primarily targeting HER2 and TROP2.
- Tumor heterogeneity and resistance limit current ADC efficacy, necessitating new targets.
- CD44 variant isoform 9 (CD44v9) is highly expressed in aggressive breast cancers and linked to stemness and resistance.
Purpose of the Study:
- To develop and evaluate a novel ADC targeting CD44v9 for breast cancer treatment.
- To assess CD44v9 as a tumor-specific target for overcoming therapeutic resistance.
Main Methods:
- Developed a chimeric monoclonal antibody against CD44v9 and conjugated it with MMAF (anti-CD44v9-MMAF).
- Analyzed CD44v9 expression in breast cancer and normal tissues via immunohistochemistry.
- Assessed binding, internalization, and in vitro/in vivo cytotoxicity of anti-CD44v9-MMAF in various breast cancer models, including resistant ones.
Main Results:
- CD44v9 is highly expressed in breast cancer but absent in most normal tissues.
- Anti-CD44v9-MMAF demonstrated specific binding, efficient internalization, and potent, antigen-dependent cytotoxicity.
- The ADC showed dose-dependent tumor inhibition in vivo with minimal systemic toxicity.
- CD44v9-targeted therapy remained effective in models resistant to existing ADCs (trastuzumab deruxtecan, sacituzumab govitecan, T-DM1).
Conclusions:
- CD44v9 is a tumor-specific and clinically actionable target for ADCs in advanced breast cancer.
- CD44v9-directed ADCs offer a potential therapeutic strategy for patients with treatment-refractory disease.
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