The ROR1 antibody-drug conjugate huXBR1-402-G5-PNU effectively targets ROR1+ leukemia

Author:

Hu Eileen Y.12,Do Priscilla3,Goswami Swagata1,Nunes Jessica1,Chiang Chi-ling1,Elgamal Sara1ORCID,Ventura Ann M.1,Cheney Carolyn1,Zapolnik Kevan1,Williams Erich4,Mani Rajeswaran1,Frissora Frank1,Mo Xiaokui5,Waldmeier Lorenz6,Beerli Roger R.6,Peng Haiyong7,Rader Christoph7ORCID,Long Meixiao1,Grawunder Ulf6,Byrd John C.1,Muthusamy Natarajan1

Affiliation:

1. Division of Hematology, Department of Internal Medicine and Comprehensive Cancer Center, and

2. Medical Scientist Training Program, The Ohio State University, Columbus, OH, and

3. Department of Biomedical Engineering, Emory University, Atlanta, GA;

4. Flow Cytometry Core, Emory University, Atlanta, GA

5. Department of Biomedical Informatics, The Ohio State University, Columbus, OH;

6. NBE-Therapeutics Ltd., Basel, Switzerland; and

7. Department of Immunology and Microbiology, The Scripps Research Institute, Jupiter, FL;

Abstract

Abstract Antibody-drug conjugates directed against tumor-specific targets have allowed targeted delivery of highly potent chemotherapy to malignant cells while sparing normal cells. Receptor tyrosine kinase-like orphan receptor 1 (ROR1) is an oncofetal protein with limited expression on normal adult tissues and is overexpressed on the surface of malignant cells in mantle cell lymphoma, acute lymphocytic leukemia with t(1;19)(q23;p13) translocation, and chronic lymphocytic leukemia. This differential expression makes ROR1 an attractive target for antibody-drug conjugate therapy, especially in malignancies such as mantle cell lymphoma and acute lymphocytic leukemia, in which systemic chemotherapy remains the gold standard. Several preclinical and phase 1 clinical studies have established the safety and effectiveness of anti-ROR1 monoclonal antibody–based therapies. Herein we describe a humanized, first-in-class anti-ROR1 antibody-drug conjugate, huXBR1-402-G5-PNU, which links a novel anti-ROR1 antibody (huXBR1-402) to a highly potent anthracycline derivative (PNU). We found that huXBR1-402-G5-PNU is cytotoxic to proliferating ROR1+ malignant cells in vitro and suppressed leukemia proliferation and extended survival in multiple models of mice engrafted with human ROR1+ leukemia. Lastly, we show that the B-cell lymphoma 2 (BCL2)-dependent cytotoxicity of huXBR1-402-G5-PNU can be leveraged by combined treatment strategies with the BCL2 inhibitor venetoclax. Together, our data present compelling preclinical evidence for the efficacy of huXBR1-402-G5-PNU in treating ROR1+ hematologic malignancies.

Publisher

American Society of Hematology

Subject

Hematology

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