Neuroblastoma Research and Treatments Open access

Development and Optimization of 111In-Dinutuximab-IRDye800, a Dual-Modality Intraoperative Molecular Imaging Agent for Pediatric Neuroblastoma Resection

Catherine Yip, Lauren Rosenblum, Arjun Pant, Arianna Kahler‐Quesada and 12 more

bioRxiv (Cold Spring Harbor Laboratory) | Aug 31, 2026

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111In-Dinutuximab-IRDye800 is a dual-modality GD2-targeted intraoperative imaging agent that is well-poised for clinical translation and carries the potential to positively impact the safety and completeness of neuroblastoma resection.

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Rationale: Neuroblastoma is a devastating pediatric malignancy, for which surgical resection is a key factor in long-term survival. However, there are significant challenges in its resection, particularly in high-risk disease, as neuroblastoma encases surrounding critical structures, is often difficult to distinguish from desmoplastic or scar tissue, and can carry occult deposits of disease not readily identified on preoperative imaging or intraoperative visualization. Building on the principles of fluorescent and radio-guided surgery, in combination with the known overexpression of GD2 in neuroblastoma, we sought to develop and optimize 111In-Dinutuximab-IRDye800, a dual-modality GD2-targeted intraoperative molecular imaging agent, for use in pediatric neuroblastoma to help enhance patient safety while facilitating a more complete resection. Methods: Dinutuximab was conjugated to IRDye800 and DTPA, then radiolabeled with Indium-111 to yield 111In-Dinutuximab-IRDye800. Optimization occurred through ELISA assay to assess binding affinity, fluorescence intensity analysis to determine the optimal fluorescent degree of labeling, and phototoxicity testing through flow cytometry. Rodent models of neuroblastoma were then generated through injection of SK-N-BE(2) human neuroblastoma cells into the left adrenal glands of nude mice or RNU rats. A series of fluorescent and gamma biodistributions was performed, varying the dose, timing, and specific activity of the tracer. Tumor and organ uptake of the tracer was compared with one- or two-way ANOVA as appropriate, with Sidaks multiple comparison test to compare tumor uptake to individual organs. Once optimization was complete, a clinically significant events study modeled after human clinical trials was performed to evaluate the in vivo capabilities of 111In-Dinutuximab-IRDye800. Results: Increased ratios of IRDye800 per antibody led to decreased binding affinity for GD2 and was associated with formulation instability without significant return on fluorescence intensity. Specific activity of the tracer was not found to impact overall biodistribution of the tracer. A 45-50 microgram dose of 111In-Dinutuximab-IRDye800 with ratios around 1 DTPA and 1-1.5 IRDye800 per antibody imaged 4 days after tracer administration was found to be the optimal combination that maximized detectable tumor-specific signal. In the clinically significant events study mirroring human IMI clinical trials, fluorescent guidance identified additional malignant lesions not originally detected under white light in 64% of rodents. Conclusions: 111In-Dinutuximab-IRDye800 is a dual-modality GD2-targeted intraoperative imaging agent that is well-poised for clinical translation. As it preserves tumor specificity, yields clinically meaningful radiofluorescent signal, and is well-tolerated without adverse events after optimization was completed, it carries the potential to positively impact the safety and completeness of neuroblastoma resection.

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Authors

Researchers on this paper

Catherine Yip

first | University of Pittsburgh | ORCID 0009-0001-5327-7199

Lauren Rosenblum

middle | University of Pittsburgh | ORCID 0000-0002-5628-1652

Arjun Pant

middle | University of Pittsburgh | ORCID 0000-0003-0194-7880

Arianna Kahler‐Quesada

middle | University of Pittsburgh | ORCID 0000-0002-0829-7529

Bhuvitha Chagantipati

middle | University of Pittsburgh

ReidAnn E. Sever

middle | University of Pittsburgh | ORCID 0009-0007-7063-2600

Brady Grano-Mickelsen

middle | University of Pittsburgh | ORCID 0009-0002-7047-0617

B. Li

middle | University of Missouri

Angel Cortez

middle | University of Pittsburgh | ORCID 0000-0001-6829-6467

Joseph D. Latoche

middle | University of Pittsburgh | ORCID 0000-0002-4800-5623

Kathryn Elizabeth Day

middle | University of Pittsburgh

Lora H. Rigatti

middle | University of Pittsburgh | ORCID 0000-0003-3921-0593

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Citation

BibTeX

@article{Yip2026Development,
  title = {Development and Optimization of 111In-Dinutuximab-IRDye800, a Dual-Modality Intraoperative Molecular Imaging Agent for Pediatric Neuroblastoma Resection},
  author = {Catherine Yip and Lauren Rosenblum and Arjun Pant and Arianna Kahler‐Quesada and Bhuvitha Chagantipati and ReidAnn E. Sever and Brady Grano-Mickelsen and B. Li and Angel Cortez and Joseph D. Latoche and Kathryn Elizabeth Day and Lora H. Rigatti and Jessie R. Nedrow and Barry W Edwards and Gary Kohanbash and Marcus M. Malek},
  journal = {bioRxiv (Cold Spring Harbor Laboratory)},
  year = {2026},
  doi = {10.64898/2026.08.28.747876},
  url = {https://doi.org/10.64898/2026.08.28.747876}
}

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