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High-Yield Room-Temperature Aryl 211At Radiolabeling via Redox-Activated Column-Shipped 211At
Jehan S Perera1, Jennifer M Pyles1, Adrianna L Orsi1
1Department of Chemistry, University of Alabama at Birmingham, Birmingham, Alabama 35294, United States.
Abstract:
Efficient late-stage formation of aryl-211At bonds is relevant to expanding the scope of targeted α-therapy radiopharmaceuticals. In this work, a catalyst-enabled astatodeboronation approach is evaluated using wet chemically regenerated 211At recovered from shipped 3-octanone-impregnated columns. A series of aryl boronic esters bearing electron-donating and electron-withdrawing substituents were radiolabeled under mild conditions, with reaction parameters examined through time-dependent studies. Radiochemical conversions ranging from 68-97% were observed across the substrate set. Density functional theory calculations were employed as a qualitative framework to contextualize relative B-C and At-C bonding descriptors. Overall, this study demonstrates that wet chemically regenerated 211At can be applied to the late-stage labeling of aryl boronic esters under mild conditions and provides guidance for future exploration of 211At radiolabeling strategies.

