Synthesis and Comparative In Vivo Evaluation of Site-Specifically Labeled Radioimmunoconjugates for DLL3-Targeted

Sai Kiran Sharma1,2, Pierre Adumeau2, Outi Keinänen1,2

  • 1Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, New York 10065, United States.

Insights

Site-specific labeling of Delta-like ligand 3 (DLL3)-targeted radioimmunoconjugates using PODS-DFO improves in vivo performance for immunoPET imaging. This method yields homogeneous constructs with reduced kidney uptake, enhancing potential for clinical use in DLL3-expressing cancers.

Area of Science:

  • Radiopharmaceutical Chemistry
  • Immunotherapy
  • Oncology

Background:

  • Delta-like ligand 3 (DLL3) is a key therapeutic target for small cell lung cancer, neuroendocrine prostate cancer, and IDH-mutant glioma.
  • 89Zr-immunoPET aids in assessing disease burden and patient selection for DLL3-targeted therapies.
  • Current random conjugation methods for 89Zr-radioimmunoconjugates produce heterogeneous constructs with suboptimal performance.

Purpose of the Study:

  • To develop and evaluate site-specifically labeled radioimmunoconjugates for DLL3-targeted immunoPET.
  • To compare the in vivo behavior of constructs labeled with maleimide-DFO (Mal-DFO) versus phenyl-oxadiazolyl methyl sulfone-DFO (PODS-DFO).

Main Methods:

  • Modified a cysteine-engineered DLL3-targeting antibody (SC16-MB1) with Mal-DFO and PODS-DFO.
  • Explored reduction methods (TCEP vs. glutathione/arginine) to achieve a Drug-to-Antibody Ratio (DAR) of 2.
  • Preclinically evaluated 89Zr-labeled immunoconjugates in mice bearing DLL3-expressing H82 xenografts.

Main Results:

  • Glutathione and arginine enabled selective cysteine reduction, yielding homogeneous immunoconjugates with controlled DAR.
  • 89Zr-DFOPODS-DAR2SC16-MB1 showed 30% lower kidney uptake compared to the maleimide-based counterpart.
  • PODS-based isotype control also exhibited significantly lower kidney radioactivity than its maleimide-based analog.

Conclusions:

  • Site-specific labeling with PODS-DFO offers improved in vivo performance for DLL3-targeted immunoPET.
  • Homogeneous DAR2 immunoconjugates demonstrate potential for clinical application in imaging DLL3-expressing cancers.
  • The PODS-based approach mitigates off-target organ accumulation, particularly in the kidneys.

Related Concept Videos