A DLL3-targeted antibody-drug conjugate eradicates high-grade pulmonary neuroendocrine tumor-initiating cells in vivo

Laura R. Saunders(ChemoCentryx (United States)), Alexander J. Bankovich(ChemoCentryx (United States)), Wade Anderson(ChemoCentryx (United States)), Monette Aujay(ChemoCentryx (United States)), Sheila Bheddah(ChemoCentryx (United States)), KristenAnn Black(ChemoCentryx (United States)), Radhika Desai(ChemoCentryx (United States)), Paul A. Escarpe(ChemoCentryx (United States)), Johannes Hampl(ChemoCentryx (United States)), Amy Laysang(ChemoCentryx (United States)), David Liu(ChemoCentryx (United States)), Javier Lopez-Molina(ChemoCentryx (United States)), Milly Milton(ChemoCentryx (United States)), Albert Park(ChemoCentryx (United States)), Marybeth A. Pysz(ChemoCentryx (United States)), Hui Shao(ChemoCentryx (United States)), Brian C. Slingerland(ChemoCentryx (United States)), Michael Torgov(ChemoCentryx (United States)), Samuel A. Williams(ChemoCentryx (United States)), Orit Foord(ChemoCentryx (United States)), Philip W. Howard(AstraZeneca (Poland)), Jacek Jassem(Gdańsk Medical University), A. Badzio(Gdańsk Medical University), Piotr Czapiewski(Gdańsk Medical University), David H. Harpole(Duke University), Afshin Dowlati(University Hospitals Seidman Cancer Center), Pierre P. Massion(Vanderbilt University), William D. Travis(Memorial Sloan Kettering Cancer Center), M. Catherine Pietanza(Memorial Sloan Kettering Cancer Center), John T. Poirier(Memorial Sloan Kettering Cancer Center), Charles M. Rudin(Memorial Sloan Kettering Cancer Center), Robert Stull(ChemoCentryx (United States)), Scott J. Dylla(ChemoCentryx (United States))
Science Translational Medicine
August 26, 2015
Cited by 575

Abstract

The high-grade pulmonary neuroendocrine tumors, small cell lung cancer (SCLC) and large cell neuroendocrine carcinoma (LCNEC), remain among the most deadly malignancies. Therapies that effectively target and kill tumor-initiating cells (TICs) in these cancers should translate to improved patient survival. Patient-derived xenograft (PDX) tumors serve as excellent models to study tumor biology and characterize TICs. Increased expression of delta-like 3 (DLL3) was discovered in SCLC and LCNEC PDX tumors and confirmed in primary SCLC and LCNEC tumors. DLL3 protein is expressed on the surface of tumor cells but not in normal adult tissues. A DLL3-targeted antibody-drug conjugate (ADC), SC16LD6.5, comprised of a humanized anti-DLL3 monoclonal antibody conjugated to a DNA-damaging pyrrolobenzodiazepine (PBD) dimer toxin, induced durable tumor regression in vivo across multiple PDX models. Serial transplantation experiments executed with limiting dilutions of cells provided functional evidence confirming that the lack of tumor recurrence after SC16LD6.5 exposure resulted from effective targeting of DLL3-expressing TICs. In vivo efficacy correlated with DLL3 expression, and responses were observed in PDX models initiated from patients with both limited and extensive-stage disease and were independent of their sensitivity to standard-of-care chemotherapy regimens. SC16LD6.5 effectively targets and eradicates DLL3-expressing TICs in SCLC and LCNEC PDX tumors and is a promising first-in-class ADC for the treatment of high-grade pulmonary neuroendocrine tumors.


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