Advances in [18F]Trifluoromethylation Chemistry for PET Imaging

被引:26
作者
Francis, Felix [1 ]
Wuest, Frank [1 ,2 ]
机构
[1] Univ Alberta, Dept Chem, 11227 Saskatchewan Dr NW, Edmonton, AB T6G 2N4, Canada
[2] Univ Alberta, Dept Oncol, 11560 Univ Ave, Edmonton, AB T6G 1Z2, Canada
来源
MOLECULES | 2021年 / 26卷 / 21期
关键词
fluorine-18; trifluoromethylation chemistry; positron emission tomography (PET); POSITRON-EMISSION-TOMOGRAPHY; F-18; FLUORINATION; F-18-TRIFLUOROMETHYLATION; HYPOXIA; AGENT; ARYL; RADIOSYNTHESIS; RADIOTRACER; PROGRESS;
D O I
10.3390/molecules26216478
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Positron emission tomography (PET) is a preclinical and clinical imaging technique extensively used to study and visualize biological and physiological processes in vivo. Fluorine-18 (F-18) is the most frequently used positron emitter for PET imaging due to its convenient 109.8 min half-life, high yield production on small biomedical cyclotrons, and well-established radiofluorination chemistry. The presence of fluorine atoms in many drugs opens new possibilities for developing radioligands labelled with fluorine-18. The trifluoromethyl group (CF3) represents a versatile structural motif in medicinal and pharmaceutical chemistry to design and synthesize drug molecules with favourable pharmacological properties. This fact also makes CF3 groups an exciting synthesis target from a PET tracer discovery perspective. Early attempts to synthesize [F-18]CF3-containing radiotracers were mainly hampered by low radiochemical yields and additional challenges such as low radiochemical purity and molar activity. However, recent innovations in [F-18]trifluoromethylation chemistry have significantly expanded the chemical toolbox to synthesize fluorine-18-labelled radiotracers. This review presents the development of significant [F-18]trifluoromethylation chemistry strategies to apply [F-18]CF3-containing radiotracers in preclinical and clinical PET imaging studies. The continuous growth of PET as a crucial functional imaging technique in biomedical and clinical research and the increasing number of CF3-containing drugs will be the primary drivers for developing novel [F-18]trifluoromethylation chemistry strategies in the future.
引用
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页数:25
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