A whole-body imaging technique for tumor-specific diagnostics and screening of B7H3-targeted therapies

Lei Xia1, Yan Wu2, Yanan Ren3

  • 1Key laboratory of Carcinogenesis and Translational Research (Ministry of Education), Beijing Key Laboratory of Research, Investigation and Evaluation of Radiopharmaceuticals, NMPA Key Laboratory for Research and Evaluation of Radiopharmaceuticals (National Medical Products Administration), Department of Nuclear Medicine, Peking University Cancer Hospital and Institute, Beijing, China and.

Insights

A novel radiotracer, [68Ga]Ga-B7H3-BCH, effectively targets B7H3-overexpressing tumors for noninvasive imaging. This agent shows promise in diagnosing and monitoring various malignant tumors, outperforming 18F-FDG in clinical studies.

Area of Science:

  • Oncology
  • Radiochemistry
  • Molecular Imaging

Background:

  • B7H3 (CD276) is highly overexpressed in human malignant tumors.
  • Targeting B7H3 could enable universal, noninvasive imaging of B7H3-expressing lesions.
  • Developing a B7H3-specific radiotracer is crucial for whole-body tumor assessment.

Purpose of the Study:

  • To develop and evaluate a novel B7H3-targeting radiotracer, [68Ga]Ga-B7H3-BCH, for PET imaging of malignant tumors.
  • To assess the diagnostic efficacy and correlation with B7H3 expression in a clinical setting.

Main Methods:

  • Optimization of a B7H3-targeting affibody (ABY) to create the radiolabeled tracer [68Ga]Ga-B7H3-BCH.
  • In vitro studies with B7H3-transfected cells and in vivo PET imaging of xenograft models.
  • Clinical translation involving 20 patients with malignant tumors.

Main Results:

  • [68Ga]Ga-B7H3-BCH demonstrated high affinity (KD = 4.5 nM) and specific uptake in B7H3-expressing cells and tumors.
  • Clinical PET imaging revealed aggregation of the tracer in primary and metastatic lesions.
  • [68Ga]Ga-B7H3-BCH showed superior diagnostic efficacy (85.0%) compared to 18F-FDG (81.7%) and strongly correlated with B7H3 expression.

Conclusions:

  • [68Ga]Ga-B7H3-BCH is a promising radiotracer for noninvasively identifying B7H3 expression in systemic malignant lesions.
  • This agent has potential for improving pretreatment evaluation, predicting treatment response, and monitoring therapy resistance.
  • B7H3-specific PET imaging can predict B7H3 expression levels in tumor and surrounding tissues.