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Synthesis and Bioconjugation of Thiol-Reactive Reagents for the Creation of Site-Selectively Modified Immunoconjugates
Published on: March 6, 2019
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.
Abstract:
Delta-like ligand 3 (DLL3) is a therapeutic target for the treatment of small cell lung cancer, neuroendocrine prostate cancer, and isocitrate dehydrogenase mutant glioma. In the clinic, DLL3-targeted 89Zr-immunoPET has the potential to aid in the assessment of disease burden and facilitate the selection of patients suitable for therapies that target the antigen. The overwhelming majority of 89Zr-labeled radioimmunoconjugates are synthesized via the random conjugation of desferrioxamine (DFO) to lysine residues within the immunoglobulin. While this approach is admittedly facile, it can produce heterogeneous constructs with suboptimal in vitro and in vivo behavior. In an effort to circumvent these issues, we report the development and preclinical evaluation of site-specifically labeled radioimmunoconjugates for DLL3-targeted immunoPET. To this end, we modified a cysteine-engineered variant of the DLL3-targeting antibody SC16-MB1 with two thiol-reactive variants of DFO: one bearing a maleimide moiety (Mal-DFO) and the other containing a phenyloxadiazolyl methyl sulfone group (PODS-DFO). In an effort to obtain immunoconjugates with a DFO-to-antibody ratio (DAR) of 2, we explored both the reduction of the antibody with tris(2-carboxyethyl) phosphine (TCEP) as well as the use of a combination of glutathione and arginine as reducing and stabilizing agents, respectively. While exerting control over the DAR of the immunoconjugate proved cumbersome using TCEP, the use of glutathione and arginine enabled the selective reduction of the engineered cysteines and thus the formation of homogeneous immunoconjugates. A head-to-head comparison of the resulting 89Zr-radioimmunoconjugates in mice bearing DLL3-expressing H82 xenografts revealed no significant differences in tumoral uptake and showed comparable radioactivity concentrations in most healthy nontarget organs. However, 89Zr-DFOPODS-DAR2SC16-MB1 produced 30% lower uptake (3.3 ± 0.5 %ID/g) in the kidneys compared to 89Zr-DFOMal-DAR2SC16-MB1 (4.7 ± 0.5 %ID/g). In addition, H82-bearing mice injected with a 89Zr-labeled isotype-control radioimmunoconjugate synthesized using PODS exhibited ∼40% lower radioactivity in the kidneys compared to mice administered its maleimide-based counterpart. Taken together, these results demonstrate the improved in vivo performance of the PODS-based radioimmunoconjugate and suggest that a stable, well-defined DAR2 radiopharmaceutical may be suitable for the clinical immunoPET of DLL3-expressing cancers.
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.
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