Molecular imaging of T cell co-regulator factor B7-H3 with 89Zr-DS-5573a

Ingrid Julienne Georgette Burvenich1,2, Sagun Parakh1,2,3, Fook-Thean Lee1

  • 1Tumour Targeting Laboratory, Ludwig Institute for Cancer Research and Olivia Newton-John Cancer Research Institute, Melbourne, Australia.

Theranostics
|August 22, 2018
PubMed

Insights

This study developed 89Zr-DS-5573a, a novel molecular imaging probe targeting B7-H3. The probe shows specific and prolonged uptake in B7-H3-expressing tumors, indicating potential for cancer patient selection in clinical trials.

Area of Science:

  • Oncology
  • Immunology
  • Radiochemistry

Background:

  • B7-H3 is a transmembrane protein implicated in anti-tumor immunity and widely expressed across various cancers.
  • Developing targeted molecular imaging probes is crucial for identifying cancer biomarkers and guiding therapeutic strategies.

Purpose of the Study:

  • To develop 89Zr-DS-5573a as a molecular imaging probe for B7-H3 expression in tumors.
  • To evaluate 89Zr-DS-5573a as a theranostic agent for patient selection in early-phase clinical studies.

Main Methods:

  • The humanized monoclonal antibody DS-5573a was radiolabeled with zirconium-89 (89Zr).
  • In vitro assessments included radiochemical purity, immunoreactivity, antigen binding affinity, and serum stability.
  • In vivo studies utilized PET/MRI in B7-H3-positive (MDA-MB-231) and B7-H3-negative (CT26) cancer models, including therapy-combination studies.

Main Results:

  • 89Zr-DS-5573a exhibited high and specific binding to B7-H3-expressing cells in vitro, with good serum stability.
  • In vivo studies demonstrated high tumor uptake and excellent localization in B7-H3-positive tumors, with minimal non-specific uptake.
  • Receptor saturation was observed in tumors responding to therapeutic DS-5573a, correlating imaging with therapy response.

Conclusions:

  • 89Zr-DS-5573a effectively targets B7-H3-expressing tumors in vivo with prolonged retention.
  • The probe's ability to demonstrate receptor saturation suggests its utility in monitoring therapeutic efficacy.
  • 89Zr-DS-5573a holds promise for B7-H3-targeted cancer imaging and theranostics, potentially aiding patient selection and offering insights into T cell biology.

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