Dual-labeled anti-GD2 targeted probe for intraoperative molecular imaging of neuroblastoma

Lauren Taylor Rosenblum1, ReidAnn E Sever2, Ryan Gilbert3

  • 1Department of General Surgery, University of Pittsburgh, 200 Lothrop Street, Pittsburgh, PA, 15213, USA.

PubMed
Abstract

Insights

This study developed a dual-labeled tracer for intraoperative molecular imaging of neuroblastoma. The tracer successfully targets GD2-expressing tumors, enabling visualization and detection of residual disease to improve surgical outcomes in children.

Area of Science:

  • Oncology
  • Medical Imaging
  • Surgical Innovation

Background:

  • Neuroblastoma, a common childhood cancer, presents surgical resection challenges.
  • Intraoperative molecular imaging (IMI) aims to improve tumor localization and resection accuracy.
  • GD2 is a promising target for IMI due to its high expression on neuroblastoma cells.

Purpose of the Study:

  • To develop and evaluate a dual-labeled tracer for radio- and fluorescence-guided surgery in neuroblastoma.
  • To assess the binding affinity and tumor-specific accumulation of the novel tracer.
  • To determine the feasibility of using handheld tools for visualizing tumors and residual disease.

Main Methods:

  • Conjugation of anti-GD2 antibody with DTPA and IRDye® 800CW to create a dual-labeled tracer.
  • Assessment of tracer binding affinity using ELISA.
  • In vivo evaluation in a mouse model of human neuroblastoma xenografts, followed by biodistribution analysis and imaging.

Main Results:

  • Successful synthesis of the dual-labeled tracer (¹¹¹In-αGD2-IR800) with retained antigen-binding capacity.
  • Demonstrated antigen-specific uptake in neuroblastoma xenografts, with high tumor-to-blood ratios.
  • Enabled visualization of tumors and detection of residual disease using standard intraoperative imaging tools.

Conclusions:

  • A dual-labeled anti-GD2 antibody tracer was successfully developed for radio- and fluorescence-guided surgery.
  • The tracer specifically targets and visualizes GD2-expressing neuroblastoma xenografts.
  • This tracer holds promise for improving surgical resection and patient outcomes in pediatric neuroblastoma.