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Radiolabelling diverse positron emission tomography (PET) tracers using a single digital microfluidic reactor chip
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Radiolabelling diverse positron emission tomography (PET) tracers using a single digital microfluidic reactor chip

Supin Chen, Muhammad Rashed Javed, Hee-Kwon Kim, Jack Lei, Mark Lazari, Gaurav J. Shah, R. Michael Van Dam, Pei-Yuin KengChang-Jin C.J. Kim
Lab on a Chip, 卷.14(5), 頁碼.902-910
03/2014
PMID: 24352530

摘要

Bioengineering Biochemistry Chemistry (all) Biomedical Engineering
Radiotracer synthesis is an ideal application for microfluidics because only nanogram quantities are needed for positron emission tomography (PET) imaging. Thousands of radiotracers have been developed in research settings but only a few are readily available, severely limiting the biological problems that can be studied in vivo via PET. We report the development of an electrowetting-on-dielectric (EWOD) digital microfluidic chip that can synthesize a variety of 18 F-labeled tracers targeting a range of biological processes by confirming complete syntheses of four radiotracers: a sugar, a DNA nucleoside, a protein labelling compound, and a neurotransmitter. The chip employs concentric multifunctional electrodes that are used for heating, temperature sensing, and EWOD actuation. All of the key synthesis steps for each of the four 18 F-labeled tracers are demonstrated and characterized with the chip: concentration of fluoride ion, solvent exchange, and chemical reactions. The obtained fluorination efficiencies of 90-95% are comparable to, or greater than, those achieved by conventional approaches. © The Royal Society of Chemistry 2014.

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