Zhong Xinlin, Yan Junjie, Ding Xiang, Su Chen, Xu Yuping, Yang Min
School of Life Sciences and Health Engineering, Jiangnan University, Wuxi 214122, P. R. China.
School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, P. R. China.
Bioconjug Chem. 2023 Mar 15;34(3):457-476. doi: 10.1021/acs.bioconjchem.2c00583. Epub 2023 Feb 22.
Due to their high reaction rate and reliable selectivity, bioorthogonal click reactions have been extensively investigated in numerous research fields, such as nanotechnology, drug delivery, molecular imaging, and targeted therapy. Previous reviews on bioorthogonal click chemistry for radiochemistry mainly focus on F-labeling protocols employed to produce radiotracers and radiopharmaceuticals. In fact, besides fluorine-18, other radionuclides such as gallium-68, iodine-125, and technetium-99m are also used in the field of bioorthogonal click chemistry. Herein, to provide a more comprehensive perspective, we provide a summary of recent advances in radiotracers prepared using bioorthogonal click reactions, including small molecules, peptides, proteins, antibodies, and nucleic acids as well as nanoparticles based on these radionuclides. The combination of pretargeting with imaging modalities or nanoparticles, as well as the clinical translations study, are also discussed to illustrate the effects and potential of bioorthogonal click chemistry for radiopharmaceuticals.
由于其高反应速率和可靠的选择性,生物正交点击反应已在众多研究领域中得到广泛研究,如纳米技术、药物递送、分子成像和靶向治疗。先前关于用于放射化学的生物正交点击化学的综述主要集中在用于生产放射性示踪剂和放射性药物的氟标记方案上。事实上,除了氟-18之外,其他放射性核素如镓-68、碘-125和锝-99m也被用于生物正交点击化学领域。在此,为了提供更全面的视角,我们总结了使用生物正交点击反应制备的放射性示踪剂的最新进展,包括小分子、肽、蛋白质、抗体和核酸以及基于这些放射性核素的纳米颗粒。还讨论了预靶向与成像方式或纳米颗粒的结合以及临床转化研究,以说明生物正交点击化学对放射性药物的作用和潜力。