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Updated: Apr 30, 2026
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Automated Preparation of [68Ga]Ga-3BP-3940 on a Synthesis Module for PET Imaging of the Tumor Microenvironment
Published on: April 25, 2025
Development and Preclinical Evaluation of Dual-Target 68Ga/177Lu-Labeled FAP-Bisphosphonate Radioligands with
Ruiyue Zhao1, Yuling Deng1, Wenbin Jin2
1Department of Nuclear Medicine, The First Affiliated Hospital of Guangzhou Medical University, Guangzhou, Guangdong 510120, China.
Abstract:
Bone metastases and associated skeletal-related events (SREs) severely compromise the survival and quality of life of patients with advanced cancer. Although bisphosphonates enable efficient bone targeting, their radiolabeled analogues exhibit limited uptake in osteolytic lesions due to the low hydroxyapatite content. Fibroblast activation protein, highly expressed in cancer-associated fibroblasts within the tumor microenvironment, provides tumor specificity and may enhance tracer accumulation in osteolytic bone metastases. To overcome this limitation, we developed two heterodimeric [68Ga]Ga/[177Lu]Lu-DOTA-FAPI-bisphosphonate radioligands ([68Ga]Ga/[177Lu]Lu-DFP-1/2) by integrating a FAP-targeting moiety with a bisphosphonate backbone. Both compounds were synthesized with high radiochemical purity (>95%) and excellent in vitro stability. In A549-FAP xenograft models, dynamic PET/CT imaging revealed comparable tumor uptake of [68Ga]Ga-DFP-1/2 and [68Ga]Ga-FAPI-04 up to 2 h postinjection, with [68Ga]Ga-DFP-2 demonstrating faster clearance from nontarget organs. In tibial A549-FAP osteogenic models, [68Ga]Ga-DFP-2 showed significantly higher uptake (4.88 ± 1.01% ID/mL) than mono-FAP or monobisphosphonate tracers (p < 0.05). In osteolytic A549 models, [68Ga]Ga-DFP-2 uptake (3.16 ± 0.82% ID/mL) also exceeded that of monobisphosphonate tracers (p < 0.01). Biodistribution studies confirmed prolonged [177Lu]Lu-DFP-2 retention (26.94 ± 4.40% ID/g at 168 h). Collectively, these findings demonstrate that [68Ga]Ga/[177Lu]Lu-DFP-2 possesses favorable dual bone- and tumor-targeting characteristics and holds strong translational promise as a novel theranostic agent for the imaging and treatment of lung cancer bone metastases.
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