A copper-mediated
radiofluorination of aryl- and vinylboronic acids
with K18F is described. This method exhibits high functional
group tolerance and is effective for the radiofluorination of a range
of electron-deficient, -neutral, and -rich aryl-, heteroaryl-, and
vinylboronic acids. This method has been applied to the synthesis
of [18F]FPEB, a PET radiotracer for quantifying metabotropic
glutamate 5 receptors.
A practical, rapid, and highly regioselective
Cu-catalyzed radiofluorination
of (mesityl)(aryl)iodonium salts is described. This protocol utilizes
[18F]KF to access 18F-labeled electron-rich,
-neutral, and -deficient aryl fluorides under a single set of mild
conditions. This methodology is applied to the synthesis of protected
versions of two important radiotracers: 4-[18F]fluorophenylalanine
and 6-[18F]fluoroDOPA.
The last 2–3 years have seen numerous relationships develop between organometallic chemists, fluorine chemists and PET Centers around the world. These collaborations have led to the development of many new strategies for the late-stage introduction of fluorine-18 into complex bioactive molecules. In this perspective we highlight recent developments and key milestones since 2011.
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