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Updated: Sep 15, 2025
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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
Rational Design and Synthesis of Peptide-Based Probes for Fibroblast Activation Protein-Targeted Magnetic Resonance
Xiaoyu Wang1, Rongfeng Zou2, Ningxin Yang1
1Department of Radiology, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200092, China.
Abstract:
Cancer-associated fibroblasts (CAFs), characterized by the expression of fibroblast activation protein (FAP), play a pivotal role in tumor progression and therapy resistance. FAP-targeted molecular imaging offers a powerful tool for the precise visualization and quantification of CAFs within tumors. In this study, guided by molecular docking analyses, we rationally designed and synthesized two novel FAP-targeted probes, FAPtp1Mn-ICG and FAPtp2Mn-ICG, by conjugating FAP-targeted peptides, Mn-NOTA, and indocyanine green (ICG). These dual-modality probes, integrating magnetic resonance (MR) and near-infrared fluorescence (NIRF) imaging, were developed to enhance the evaluation of CAFs in gastric cancer. A key innovation lies in the introduction of a polyethylene glycol linker in FAPtp2Mn-ICG, which significantly mitigates aggregation-caused quenching (ACQ) and improves NIRF imaging efficiency compared to FAPtp1Mn-ICG. In vitro studies confirmed the high FAP-targeted specificity and biosafety of both probes. In vivo imaging in tumor-bearing mice demonstrated their excellent targeting capability and clear visualization of both subcutaneous tumors and peritoneal metastases. This work not only advances the development of FAP-targeted imaging but also provides a robust platform for the rational design of peptide-based probes for cancer diagnostics.
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