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Dynamic Imaging of Chimeric Antigen Receptor T Cells with [18F]Tetrafluoroborate Positron Emission Tomography/Computed Tomography
Published on: February 17, 2022
A whole-body imaging technique for tumor-specific diagnostics and screening of B7H3-targeted therapies
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.
Abstract:
BACKGROUNDB7H3, also known as CD276, is notably overexpressed in various malignant tumor cells in humans, with extremely high expression rates. The development of a radiotracer that targets B7H3 may provide a universal tumor-specific imaging agent and allow the noninvasive assessment of the whole-body distribution of B7H3-expressing lesions.METHODSWe enhanced and optimized the structure of an affibody (ABY) that targets B7H3 to create the radiolabeled radiotracer [68Ga]Ga-B7H3-BCH, and then, we conducted both foundational experiments and clinical translational studies.RESULTS[68Ga]Ga-B7H3-BCH exhibited high affinity (equilibrium dissociation constant [KD] = 4.5 nM), and it was taken up in large amounts by B7H3-transfected cells (A549CD276 and H1975CD276 cells); these phenomena were inhibited by unlabeled precursors. Moreover, PET imaging of multiple xenograft models revealed extensive [68Ga]Ga-B7H3-BCH uptake by tumors. In a clinical study including 20 patients with malignant tumors, the [68Ga]Ga-B7H3-BCH signal aggregated in both primary and metastatic lesions, surpassing fluorine-18 fluorodeoxyglucose (18F-FDG) in overall diagnostic efficacy for tumors (85.0% vs. 81.7%), including differentiated hepatocellular and metastatic gastric cancers. A strong correlation between B7H3 expression and [68Ga]Ga-B7H3-BCH uptake in tumors was observed, and B7H3 expression was detected with 84.38% sensitivity and 100% specificity when a maximum standardized uptake value (SUVmax) of 3.85 was set as the cutoff value. Additionally, B7H3-specific PET imaging is expected to predict B7H3 expression levels in tumor cells, intratumoral stroma, and peritumoral tissues.CONCLUSIONIn summary, [68Ga]Ga-B7H3-BCH has potential for the noninvasive identification of B7H3 expression in systemic lesions in patients with malignant tumors. This agent has prospects for improving pretreatment evaluation, predicting therapeutic responses, and monitoring resistance to therapy in patients with malignancies.TRIAL REGISTRATIONClinicalTrials.gov NCT06454955.FUNDINGThis research was financially supported by the Natural Science Foundation of Beijing Municipality (no. 7242266), the National Natural Science Foundation of China (no. 82202201), and the Young Elite Scientists Sponsorship Program by China Association for Science and Technology (CAST) (no. YESS20220230).
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.

