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Published on: October 15, 2016
Novel Antibody Drug Conjugates Targeting Tumor-Associated Receptor Tyrosine Kinase ROR2 by Functional Screening of
Ina Hellmann1, Lorenz Waldmeier1, Marie-Christine Bannwarth-Escher1
1NBE-Therapeutics Ltd., Basel, Switzerland.
Abstract:
Receptor tyrosine kinase-like orphan receptor 2 (ROR2) has been identified as a highly relevant tumor-associated antigen in a variety of cancer indications of high unmet medical need, including renal cell carcinoma and osteosarcoma, making it an attractive target for targeted cancer therapy. Here, we describe the de novo discovery of fully human ROR2-specific antibodies and potent antibody drug conjugates (ADCs) derived thereof by combining antibody discovery from immune libraries of human immunoglobulin transgenic animals using the Transpo-mAb mammalian cell-based IgG display platform with functional screening for internalizing antibodies using a secondary ADC assay. The discovery strategy entailed immunization of transgenic mice with the cancer antigen ROR2, harboring transgenic IgH and IgL chain gene loci with limited number of fully human V, D, and J gene segments. This was followed by recovering antibody repertoires from the immunized animals, expressing and screening them as full-length human IgG libraries by transposon-mediated display in progenitor B lymphocytes ("Transpo-mAb Display") for ROR2 binding. Individual cellular "Transpo-mAb" clones isolated by single cell sorting and capable of expressing membrane-bound as well as secreted human IgG were directly screened during antibody discovery, not only for high affinity binding to human ROR2, but also functionally as ADCs using a cytotoxicity assay with a secondary anti-human IgG-toxin-conjugate. Using this strategy, we identified and validated 12 fully human, monoclonal anti-human ROR2 antibodies with nanomolar affinities that are highly potent as ADCs and could be promising candidates for the therapy of human cancer. The screening for functional and internalizing antibodies during the early phase of antibody discovery demonstrates the utility of the mammalian cell-based Transpo-mAb Display platform to select for functional binders and as a powerful tool to improve the efficiency for the development of therapeutically relevant ADCs.
Insights
Researchers developed novel fully human antibodies targeting Receptor tyrosine kinase-like orphan receptor 2 (ROR2) for cancer therapy. These antibodies form potent antibody-drug conjugates (ADCs) with potential for treating renal cell carcinoma and osteosarcoma.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Receptor tyrosine kinase-like orphan receptor 2 (ROR2) is a tumor antigen relevant in cancers like renal cell carcinoma and osteosarcoma.
- ROR2 presents a therapeutic target for developing novel cancer treatments.
Purpose of the Study:
- To discover fully human ROR2-specific antibodies.
- To develop potent antibody-drug conjugates (ADCs) from these antibodies for cancer therapy.
Main Methods:
- Utilized Transpo-mAb mammalian cell-based IgG display platform for antibody discovery from immune libraries.
- Immunized transgenic mice with ROR2 antigen to generate antibody repertoires.
- Screened for ROR2 binding and functional ADC activity using cytotoxicity assays.
Main Results:
- Identified and validated 12 fully human monoclonal anti-ROR2 antibodies with nanomolar affinities.
- These antibodies demonstrated high potency as ADCs in functional screening.
- The developed ADCs show promise for treating ROR2-expressing human cancers.
Conclusions:
- The Transpo-mAb Display platform efficiently selects for functional, internalizing antibodies.
- This strategy accelerates the development of therapeutically relevant ADCs for cancer treatment.
- The identified ROR2-targeting ADCs are promising candidates for targeted cancer therapy.
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