Next-generation anti-DLL3 radiopharmaceuticals targeting high-grade neuroendocrine lung and prostate cancers

S Salomon Tendler R Roberto De Gregorio (Department of Radiology, Memorial Sloan Kettering Cancer Center) P Paul Balderes (Tri-Institutional Therapeutics Discovery Institute) A Alexa L. Michel (Department of Radiology, Memorial Sloan Kettering Cancer Center) T Tran T. Hoang (Department of Radiology, Memorial Sloan Kettering Cancer Center) D David Bauer (Department of Radiology, Memorial Sloan Kettering Cancer Center) K Kathryn M. Tully (Department of Radiology, Memorial Sloan Kettering Cancer Center) J Joshua A. Korsen (Department of Radiology, Memorial Sloan Kettering Cancer Center) I Ivo C. Lorenz A Abdul G. Khan L Lukas Carter (Department of Medical Physics, Memorial Sloan Kettering Cancer Center) O Olivia Vergnolle I Irina V. Lebedeva (Tri-Institutional Therapeutics Discovery Institute) E Elisabeth K. Nyakatura L Lisa Bodei (Department of Radiology, Memorial Sloan Kettering Cancer Center) M Michael J. Morris (Department of Medicine, Memorial Sloan Kettering Cancer Center) J John T. Poirier (Department of Medicine, Memorial Sloan Kettering Cancer Center) C Charles M. Rudin J Jason S. Lewis

Abstract

Delta-like ligand 3 (DLL3) is a tumor-selective cell surface protein upregulated in high-grade neuroendocrine tumors, including small-cell lung cancer (SCLC) and neuroendocrine prostate cancer (NEPC). Here, we report on the development of anti-DLL3 radioimmunoconjugates for use as either a diagnostic imaging tracer based on the positron-emitter zirconium-89 ( 89 Zr) or a therapeutic agent utilizing the beta-emitter lutetium-177 ( 177 Lu). To begin, we generated a panel of human monoclonal antibodies targeting human DLL3 by immunizing transgenic mice engineered with a human immunoglobulin repertoire. The panel was extensively screened to identify high-affinity internalizing monoclonal antibodies (mAbs) recognizing a diversity of DLL3 epitopes. Select mAbs were reformatted as fully human Fab-arm exchange-deficient IgG4 to reduce effector function and then produced by recombinant methods. A pilot immunoPET study was performed in athymic female nude mice bearing human NCI-H82 SCLC tumors to nominate a lead candidate. ImmunoPET identified [ 89 Zr]Zr-DFO-TDI-Y-010 as the top-performing diagnostic tracer, with excellent in vivo biodistribution and tumor-to-background-organ ratios consistently >4. Therapeutic studies with [ 177 Lu]Lu-CHX-A"-DTPA-TDI-Y-010 demonstrated strong antitumor effects, significantly improving ( P <0.05) overall survival compared with the benchmark clone [ 177 Lu]Lu-CHX-A"-DTPA-SC16.56 in two SCLC tumor models (NCI-H82 and Lu149) and achieving comparable overall survival in a NEPC tumor model.

Article Details

Volume / Issue Vol. 123, Issue 6
Published February 10, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (19)

S

Salomon Tendler

R

Roberto De Gregorio

Department of Radiology, Memorial Sloan Kettering Cancer Center

P

Paul Balderes

Tri-Institutional Therapeutics Discovery Institute

A

Alexa L. Michel

Department of Radiology, Memorial Sloan Kettering Cancer Center

T

Tran T. Hoang

Department of Radiology, Memorial Sloan Kettering Cancer Center

D

David Bauer

Department of Radiology, Memorial Sloan Kettering Cancer Center

K

Kathryn M. Tully

Department of Radiology, Memorial Sloan Kettering Cancer Center

J

Joshua A. Korsen

Department of Radiology, Memorial Sloan Kettering Cancer Center

I

Ivo C. Lorenz

A

Abdul G. Khan

L

Lukas Carter

Department of Medical Physics, Memorial Sloan Kettering Cancer Center

O

Olivia Vergnolle

I

Irina V. Lebedeva

Tri-Institutional Therapeutics Discovery Institute

E

Elisabeth K. Nyakatura

L

Lisa Bodei

Department of Radiology, Memorial Sloan Kettering Cancer Center

M

Michael J. Morris

Department of Medicine, Memorial Sloan Kettering Cancer Center

J

John T. Poirier

Department of Medicine, Memorial Sloan Kettering Cancer Center

C

Charles M. Rudin

J

Jason S. Lewis