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Anti-EGFR Antibody-Drug Conjugate Carrying an Inhibitor Targeting CDK Restricts Triple-Negative Breast Cancer Growth
Anthony Cheung1,2, Alicia M Chenoweth1,2, Annelie Johansson1,3
1Breast Cancer Now Research Unit, School of Cancer and Pharmaceutical Sciences, King's College London, Guy's Cancer Centre, London, United Kingdom.
Purpose:
Anti-EGFR antibodies show limited response in breast cancer, partly due to activation of compensatory pathways. Furthermore, despite the clinical success of cyclin-dependent kinase (CDK) 4/6 inhibitors in hormone receptor-positive tumors, aggressive triple-negative breast cancers (TNBC) are largely resistant due to CDK2/cyclin E expression, whereas free CDK2 inhibitors display normal tissue toxicity, limiting their therapeutic application. A cetuximab-based antibody drug conjugate (ADC) carrying a CDK inhibitor selected based on oncogene dysregulation, alongside patient subgroup stratification, may provide EGFR-targeted delivery.
Experimental Design:
Expressions of G1/S-phase cell cycle regulators were evaluated alongside EGFR in breast cancer. We conjugated cetuximab with CDK inhibitor SNS-032, for specific delivery to EGFR-expressing cells. We assessed ADC internalization and its antitumor functions in vitro and in orthotopically grown basal-like/TNBC xenografts.
Results:
Transcriptomic (6,173 primary, 27 baseline, and matched post-chemotherapy residual tumors), single-cell RNA sequencing (150,290 cells, 27 treatment-naïve tumors), and spatial transcriptomic (43 tumor sections, 22 TNBCs) analyses confirmed expression of CDK2 and its cyclin partners in basal-like/TNBCs, associated with EGFR. Spatiotemporal live-cell imaging and super-resolution confocal microscopy demonstrated ADC colocalization with late lysosomal clusters. The ADC inhibited cell cycle progression, induced cytotoxicity against high EGFR-expressing tumor cells, and bystander killing of neighboring EGFR-low tumor cells, but minimal effects on immune cells. Despite carrying a small molar fraction (1.65%) of the SNS-032 inhibitor, the ADC restricted EGFR-expressing spheroid and cell line/patient-derived xenograft tumor growth.
Conclusions:
Exploiting EGFR overexpression, and dysregulated cell cycle in aggressive and treatment-refractory tumors, a cetuximab-CDK inhibitor ADC may provide selective and efficacious delivery of cell cycle-targeted agents to basal-like/TNBCs, including chemotherapy-resistant residual disease.
Insights
A novel antibody-drug conjugate (ADC) delivers a cyclin-dependent kinase (CDK) inhibitor to EGFR-expressing triple-negative breast cancer (TNBC) cells. This targeted approach shows efficacy against aggressive tumors, including chemotherapy-resistant types.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- Anti-epidermal growth factor receptor (EGFR) antibodies have limited efficacy in breast cancer due to compensatory pathway activation.
- Aggressive triple-negative breast cancers (TNBC) are resistant to cyclin-dependent kinase (CDK) 4/6 inhibitors due to CDK2/cyclin E expression, and free CDK2 inhibitors cause normal tissue toxicity.
Purpose of the Study:
- To develop a targeted therapy for EGFR-overexpressing, treatment-refractory breast cancers, specifically basal-like/TNBC.
- To create an antibody-drug conjugate (ADC) for selective delivery of a CDK inhibitor to EGFR-expressing tumor cells, overcoming resistance mechanisms.
Main Methods:
- Conjugation of cetuximab (anti-EGFR antibody) with the CDK inhibitor SNS-032 to form an ADC.
- Evaluation of ADC internalization, cytotoxicity, and antitumor effects in vitro and in vivo using basal-like/TNBC xenografts.
- Transcriptomic, single-cell RNA sequencing, and spatial transcriptomic analyses to confirm target engagement and effects.
Main Results:
- The cetuximab-SNS-032 ADC was effectively internalized by EGFR-expressing tumor cells.
- The ADC demonstrated potent cytotoxicity against high EGFR-expressing tumor cells and bystander killing of nearby EGFR-low cells.
- Despite a low inhibitor payload, the ADC significantly restricted tumor growth in EGFR-expressing xenografts and spheroids.
Conclusions:
- A cetuximab-based ADC can selectively deliver CDK inhibitors to basal-like/TNBCs, exploiting EGFR overexpression and cell cycle dysregulation.
- This targeted approach offers a promising strategy for treating aggressive and treatment-refractory breast cancers, including residual disease.
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