PF-06804103, A Site-specific Anti-HER2 Antibody-Drug Conjugate for the Treatment of HER2-expressing Breast, Gastric, and Lung Cancers
- Mol Cancer Ther. 2020 Oct;19(10):2068-2078. doi: 10.1158/1535-7163.MCT-20-0237.
- 1. Pfizer Inc., World Wide Medicinal Chemistry, Groton, Connecticut.
- 2. Pfizer Inc., Oncology Research & Development, Pearl River, New York. [email protected] [email protected].
- 3. Pfizer Inc., Oncology Research & Development, Pearl River, New York.
- 4. Pfizer Inc., BioMedicine Design, Cambridge, Massachusetts.
- 5. Pfizer Inc., Drug Safety Research & Development, Pearl River, New York.
- 6. Pfizer Inc., BioMedicine Design, Groton, Connecticut.
- 7. Pfizer Inc., BioMedicine Design, Pearl River, New York.
- # Contributed equally.
The approval of ado-trastuzumab emtansine (T-DM1) in HER2+ metastatic breast Cancer validated HER2 as a target for HER2-specific antibody-drug conjugates (ADC). Despite its demonstrated clinical efficacy, certain inherent properties within T-DM1 hamper this compound from achieving the full potential of targeting HER2-expressing solid tumors with ADCs. Here, we detail the discovery of PF-06804103, an anti-HER2 ADC designed to have a widened therapeutic window compared with T-DM1. We utilized an empirical conjugation site screening campaign to identify the engineered ĸkK183C and K290C residues as those that maximized in vivo ADC stability, efficacy, and safety for a four drug-antibody ratio (DAR) ADC with this linker-payload combination. PF-06804103 incorporates the following novel design elements: (i) a new Auristatin payload with optimized pharmacodynamic properties, (ii) a Cleavable Linker for optimized payload release and enhanced antitumor efficacy, and (iii) an engineered cysteine site-specific conjugation approach that overcomes the traditional safety liabilities of conventional conjugates and generates a homogenous drug product with a DAR of 4. PF-06804103 shows (i) an enhanced efficacy against low HER2-expressing breast, gastric, and lung tumor models, (ii) overcomes in vitro- and in vivo-acquired T-DM1 resistance, and (iii) an improved safety profile by enhancing ADC stability, pharmacokinetic parameters, and reducing off-target toxicities. Herein, we showcase our platform approach in optimizing ADC design, resulting in the generation of the anti-HER2 ADC, PF-06804103. The design elements of identifying novel sites of conjugation employed in this study serve as a platform for developing optimized ADCs against Other tumor-specific targets.
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Cat. No.Product NameDescriptionTargetResearch Area
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target: HIF/HIF Prolyl-HydroxylaseResearch Areas: Cancer