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Updated: May 20, 2026

Optimization of Radiochemical Reactions using Droplet Arrays
Published on: February 12, 2021
Microfluidic reactor geometries for radiolysis reduction in radiopharmaceuticals
Christian Rensch1, Bjoern Waengler, Andriy Yaroshenko
1GE Global Research, Germany. rensch@ge.com
Abstract:
Autoradiolysis describes the degradation of radioactively labeled compounds due to the activity of the labeled compounds themselves. It scales with activity concentration and is of importance for high activity and microfluidic PET tracer synthesis. This study shows that microfluidic devices can be shaped to reduce autoradiolysis by geometric exclusion of positron interaction. A model is developed and confirmed by demonstrating in-capillary storage of non-stabilized [(18)F]FDG (2-[(18)F]Fluoro-2-deoxy-d-glucose) at max. 23 GBq/ml while maintaining >90% radiochemical purity over 14 h.

