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Highly specific off-target binding identified and eliminated during the humanization of an antibody against FGF
Daniela Bumbaca1, Anne Wong, Elizabeth Drake
1Early Development PKPD, Genentech, Inc., South San Francisco, CA, USA.
Abstract:
Off-target binding can significantly affect the pharmacokinetics (PK), tissue distribution, efficacy and toxicity of a therapeutic antibody. Herein we describe the development of a humanized anti- fibroblast growth factor receptor 4 (FGFR4) antibody as a potential therapeutic for hepatocellular carcinoma (HCC). A chimeric anti FGFR4 monoclonal antibody (chLD1) was previously shown to block ligand binding and to inhibit FGFR4 mediated signaling as well as tumor growth in vivo. A humanized version of chLD1, hLD1.vB, had similar binding affinity and in vitro blocking activity, but it exhibited rapid clearance, poor target tissue biodistribution and limited efficacy when compared to chLD1 in a HUH7 human HCC xenograft mouse model. These problems were traced to instability of the molecule in rodent serum. Size exclusion high performance liquid chromatography, immunoprecipitation and mass spectral sequencing identified a specific interaction between hLD1.vB and mouse complement component 3 (C3). A PK study in C3 knock-out mice further confirmed this specific interaction. Subsequently, an affinity-matured variant derived from hLD1.vB (hLD1.v22), specifically selected for its lack of binding to mouse C3 was demonstrated to have a PK profile and in vivo efficacy similar to that of chLD1 in mice. Although reports of non-specific off-target binding have been observed for other antibodies, this represents the first report identifying a specific off-target interaction that affected disposition and biological activity. Screens developed to identify general non-specific interactions are likely to miss the rare and highly specific cross-reactivity identified in this study, thus highlighting the importance of animal models as a proxy for avoiding unexpected clinical outcomes.
Insights
Developing a humanized antibody for hepatocellular carcinoma (HCC) revealed an unexpected interaction with mouse complement component 3 (C3), impacting its efficacy. A modified antibody lacking C3 binding restored therapeutic performance.
Area of Science:
- Immunology
- Pharmacology
- Oncology
Background:
- Off-target antibody binding can negatively influence pharmacokinetics, biodistribution, efficacy, and toxicity.
- A chimeric anti-fibroblast growth factor receptor 4 (FGFR4) antibody (chLD1) showed promise for hepatocellular carcinoma (HCC).
Purpose of the Study:
- To develop a humanized anti-FGFR4 antibody for HCC therapy.
- To investigate and resolve issues with the humanized antibody's pharmacokinetic (PK) profile and efficacy in vivo.
Main Methods:
- Development of a humanized antibody (hLD1.vB) from a chimeric precursor.
- Utilized size exclusion HPLC, immunoprecipitation, and mass spectrometry to identify off-target interactions.
- Conducted PK studies in wild-type and C3 knock-out mice.
- Developed an affinity-matured variant (hLD1.v22) to eliminate cross-reactivity with mouse complement component 3 (C3).
Main Results:
- The humanized antibody hLD1.vB exhibited rapid clearance, poor tissue distribution, and limited efficacy in a mouse model.
- A specific interaction between hLD1.vB and mouse complement component 3 (C3) was identified as the cause.
- The C3 interaction was confirmed via PK studies in C3 knock-out mice.
- The affinity-matured variant hLD1.v22, lacking C3 binding, demonstrated PK and efficacy comparable to the chimeric antibody.
Conclusions:
- This study identified a specific, previously unreported off-target interaction between a therapeutic antibody and mouse C3.
- This interaction significantly impacted the antibody's disposition and therapeutic efficacy in a preclinical model.
- Highlights the importance of specific cross-reactivity screening in animal models to predict and avoid unexpected clinical outcomes.
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