Related Experiment Video
Updated: Jan 15, 2026

Preparation and Evaluation of 99mTc-labeled Tridentate Chelates for Pre-targeting Using Bioorthogonal Chemistry
Published on: February 4, 2017
Evaluation of astatine-211-labeled benzoate derivatives for improved in vivo stability
Mutsuho Murata1, Kento Kannaka1, Souta Tatsuta1
1Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba, 260-8675, Japan.
Purpose:
Astatine-211 (211At) is one of the most promising α-particle-emitting radionuclides used for targeted-alpha therapy. Benzene derivatives are currently commonly used as 211At-labeling moieties for preparing 211At-labeled compounds. However, 211At-labeled compounds using benzene derivatives as the 211At-labeling moiety have known low stability against in vivo deastatination. We hypothesized that the deastatination of 211At-labeled benzene derivatives is enzyme-mediated, and that the inclusion of a bulky structure near the 211At-astatobenzene would stabilize it by inhibiting recognition by the enzymes.
Methods:
In this study, we synthesized oligopeptides with D-type amino acids, such as D-glutamic acid (e), D-alanine (a), and d-lysine (k), which have high metabolic stability against peptidases, and bound them with 211At-astatobenzoate. Then, we evaluated the stability of these 211At-labeled compounds against deastatination in vivo.
Results:
211At-labeled mono- or di-D-glutamic acid ([211At]At-Bz-e or [211At]At-Bz-ee) and 211At-labeled tri-D-alanine ([211At]At-Bz-aaa) showed high to moderate accumulation of radioactivity in the stomach and thyroid, whereas 211At-labeled tri-D-glutamic acid ([211At]At-Bz-eee) and 211At-labeled tri-d-lysine ([211At]At-Bz-kkk) showed low radioactivity levels in the stomach and thyroid. Furthermore, 211At-labeled tri-L-glutamic acid ([211At]At-Bz-EEE) displayed a higher accumulation in the stomach than [211At]At-Bz-eee. These results suggested that the in vivo deastatination of 211At-astatobenzene derivatives is not attributable to the weakness of the AtC bond, but rather to metabolization to smaller molecules with less steric hindrance to the 211At-labeling moiety in vivo and subsequent enzyme-mediated deastatination.
Conclusions:
Our findings indicated that if 211At-labeled compounds can place the steric hindrance of the tripeptide size in the vicinity of 211At-astatobenzene, in vivo stable 211At-labeled compounds can be produced, even when using the 211At-astatobenzen structure as a 211At-labeling moiety.
More Related Videos
Related Concept Videos
Bioavailability Enhancement: Drug Stability Enhancement and GI Retention
Pharmaceutical Alternatives: Stability-Related Therapeutic Nonequivalence
Drug Product Stability
Adrenergic Agonists: Chemistry and Structure-Activity Relationship
Aromatic ring substitutions: Substituting the aromatic ring with –OH groups at positions 3 and 4 yields catecholamines (e.g., epinephrine), which have a high affinity for adrenoceptors. Hydrogen bonding between –OH groups and receptors enhances adrenergic activity.
Separation of...

