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Updated: Dec 17, 2025

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Eph receptors as cancer targets for antibody-based therapy
Fenny H F Tang1, Deodate Davis1, Wadih Arap2
1Rutgers Cancer Institute of New Jersey, Newark, NJ, United States; Division of Cancer Biology, Department of Radiation Oncology, Rutgers New Jersey Medical School, Newark, NJ, United States.
Abstract:
Receptor tyrosine kinases (RTKs) are integral membrane sensors that govern cell differentiation, proliferation and mobility, and enable rapid communication between cells and their environment. Of the 20 RTK subfamilies currently known, Eph receptors are the largest group. Together with their corresponding ephrin ligands, Eph receptors regulate a diverse array of physiologic processes including axonal guidance, bone remodeling, and immune cell development and trafficking. Deregulation of Eph signaling pathways is linked to cancer and other proliferative diseases and, because RTKs play critical roles in cancer development, the specific targeting of these molecules in malignancies provides a promising treatment approach. Monoclonal antibodies targeting RTKs represent a potentially attractive modality for pharmaceutical development due to their relatively high target specificity and low off-target binding rates. Therefore, new technologies to generate antibodies able to target RTKs in their native in vivo context are likely to facilitate pre-clinical and clinical development of antibody-based therapies. Our group has recently reported a platform discovery methodology termed Selection of Phage-displayed Accessible Recombinant Targeted Antibodies (SPARTA). SPARTA is a novel and robust stepwise method, which combines the attributes of in vitro screenings of a naïve human recombinant antibody library against known tumor targets with those features of in vivo selections based on tumor-homing capabilities of a pre-enriched antibody pool. This unique approach overcomes several rate-limiting challenges to generate human monoclonal antibodies amenable to rapid translation into medical applications.
Insights
Researchers developed a new method, SPARTA, to create targeted monoclonal antibodies for cancer therapy. This platform enhances the generation of antibodies against receptor tyrosine kinases (RTKs) for improved drug development.
Area of Science:
- Biochemistry and Molecular Biology
- Immunology
- Oncology
Background:
- Receptor tyrosine kinases (RTKs) are crucial cell surface receptors regulating vital cellular functions.
- Eph receptors, the largest RTK subfamily, are implicated in development and disease, including cancer.
- Targeting RTKs with monoclonal antibodies is a promising cancer treatment strategy.
Purpose of the Study:
- To introduce a novel antibody discovery platform, SPARTA (Selection of Phage-displayed Accessible Recombinant Targeted Antibodies).
- To generate human monoclonal antibodies targeting RTKs for therapeutic applications.
- To overcome challenges in antibody development for pre-clinical and clinical translation.
Main Methods:
- SPARTA combines in vitro screening of a naive human recombinant antibody library with in vivo selection based on tumor-homing capabilities.
- Utilizes phage display technology for antibody library screening.
- Employs a stepwise methodology for robust antibody generation.
Main Results:
- SPARTA successfully generates human monoclonal antibodies against RTKs.
- The platform facilitates the discovery of antibodies with tumor-homing capabilities.
- Demonstrates a robust and efficient method for antibody discovery.
Conclusions:
- SPARTA is a novel and effective platform for generating therapeutic monoclonal antibodies against RTKs.
- This technology accelerates the development of antibody-based cancer therapies.
- SPARTA overcomes key limitations in antibody discovery, enabling rapid translation to medical applications.
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