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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Development of a Trispecific Antibody Designed to Simultaneously and Efficiently Target Three Different Antigens on
Nazzareno Dimasi1, Ryan Fleming1, Carl Hay1
1Antibody Discovery and Protein Engineering and ‡Oncology Research, MedImmune , Gaithersburg, Maryland 20878, United States.
Abstract:
Targeting Eph (erythropoietin producing hepatoma) receptors with monoclonal antibodies is being explored as therapy for several types of cancer. To test whether simultaneous targeting of EphA2, EphA4, and EphB4 would be an effective approach to cancer therapy, we generated a recombinant trispecific antibody using the variable domain genes of anti-EphA2, anti-EphA4, and anti-EphB4 monoclonal antibodies. A multidisciplinary approach combining biochemical, biophysical, and cellular-based assays was used to characterize the trispecific antibody in vitro and in vivo. Here we demonstrate that the trispecific antibody is expressed at high levels by mammalian cells, monodispersed in solution, thermostable, capable of simultaneously binding the three receptors, and able to activate the three targets effectively as evidenced by receptor internalization and degradation both in vitro and in vivo. Furthermore, pharmacokinetic analysis using tumor-bearing nude mice showed that the trispecific antibody remains in the circulation similarly to its respective parental antibodies. These results indicate that simultaneous blockade of EphA2, EphA4, and EphB4 could be an attractive approach to cancer therapy.
Insights
A novel trispecific antibody targeting EphA2, EphA4, and EphB4 receptors shows promise for cancer therapy by effectively binding and activating these targets, with favorable pharmacokinetics in mice.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Eph receptor tyrosine kinases are implicated in cancer progression.
- Monoclonal antibodies targeting Eph receptors are under investigation for cancer treatment.
Purpose of the Study:
- To evaluate a recombinant trispecific antibody targeting EphA2, EphA4, and EphB4 for cancer therapy.
- To characterize the binding, activation, and pharmacokinetic properties of the trispecific antibody.
Main Methods:
- Generation of a trispecific antibody using variable domain genes.
- Biochemical, biophysical, and cellular assays for in vitro and in vivo characterization.
- Pharmacokinetic analysis in tumor-bearing nude mice.
Main Results:
- High-level expression, stability, and monodispersity of the trispecific antibody.
- Simultaneous binding and effective activation (internalization and degradation) of EphA2, EphA4, and EphB4.
- Comparable circulation time to parental antibodies in vivo.
Conclusions:
- Simultaneous blockade of EphA2, EphA4, and EphB4 is a viable strategy for cancer therapy.
- The developed trispecific antibody demonstrates potential as an anti-cancer therapeutic agent.
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