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High-Yield <sup>99m</sup>Tc Labeling of Gold Nanoparticles Carrying Atropine and Adrenaline.

Annabelle MatternSebastian HabermannMarkus ZegkeMathias Siegfried WicklederRoger A Alberto
Published in: Bioconjugate chemistry (2022)
This work focuses on the synthesis, purification, and analytical characterization of novel multifunctional Au NPs radiolabeled with <sup>99m</sup>Tc. These mixed-ligand shell Au NPs represent pharmacologically relevant samples for potential application in theragnostics. A ligand using a plain linker with a rather long chain consisting of 10 CH<sub>2</sub> groups and a thiol moiety along with the PADA chelator has been used for both the attachment to the Au NP surface and for the <sup>99m</sup>Tc(CO)<sub>3</sub><sup>+</sup> complexation. We have combined this with our approach of stabilizing Au NP without any PEG or other stabilizing groups. Thus, monoligand shell Au NPs were radiolabeled by different strategies (prelabeling and postlabeling). Additionally, pharmacologically relevant Au NPs were synthesized carrying both a biofunctionalization with either atropine or adrenaline and the <sup>99m</sup>Tc radiolabel. All samples were obtained in very good yields (up to 80% of the total activity loaded onto the column) and completely/particularly purified using desalting columns. Detailed analytical characterization of the Au NPs before and after radiolabeling has proven the NPs' robustness throughout the process. Their intact functionalization, shape, and stability was confirmed by transmission electron microscopy (TEM), ultraviolet/visible (UV/vis) spectroscopy, dynamic light scattering (DLS), and infrared (IR) spectroscopy. The presented strategy represents a versatile building block system that can be adapted to a variety of bioactive molecules and may be of high relevance for theragnostic applications.
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