生物正交化学
化学
半胱氨酸
分子成像
生物化学
组合化学
点击化学
酶
体内
生物技术
生物
作者
Wei Diao,Jing Lu,Jie Li,Xiaoai Wu,Huawei Cai,Xinyu He,Lili Pan,Zhuzhong Cheng,Haoxing Wu,Zhiyun Jia,Wuyu Mao
标识
DOI:10.1021/acs.jmedchem.4c02165
摘要
Radiolabeled peptides are vital for positron emission tomography (PET) imaging, yet the 18F-labeling peptides remain challenging due to harsh conditions and time-consuming premodification requirements. Herein, we developed a novel vinyltetrazine-mediated bioorthogonal approach for highly efficient 18F-radiolabeling of a native peptide under mild conditions. This approach enabled radiosynthesis of various tumor-targeting PET tracers, including targeting the neurofibromin receptor (18F-P10a), the integrin αvβ3 (18F-P12a), and the platelet-derived growth factor receptor β (18F-ZPDGFRβ), with a radiochemical yield exceeding 90%. Preliminary evaluations revealed excellent hydrophilicity across these tracers, with 18F-P12a effectively visualizing integrin αvβ3 expression (tumor uptake: 1.57 ± 0.54%ID/g at 2 h). Additionally, we explored the potential for development of PET/near-infrared (NIR) dual-labeling agents using this method. The dual-modality agent 18F-Cy5-P12d enables specificity and colocalized imaging integrin αvβ3 expression (tumor uptake: 1.35 ± 0.24%ID/g at 2 h). Overall, this strategy offers a versatile platform for peptide radiolabeling and dual-modality agent development.
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