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Cyclodextrin‐Based Bimodal Fluorescence/MRI Contrast Agents: An Efficient Approach to Cellular Imaging
Authors:Zuzana Kotková Dr  Jan Kotek Dr  Daniel Jirák Dr  Pavla Jendelová Dr  Vít Herynek Dr  Zuzana Berková Dr  Petr Hermann Dr  Ivan Lukeš Prof
Institution:1. Department of Inorganic Chemistry, Univerzita Karlova v Praze (Charles University in Prague), Hlavova 2030, 128 40 Praha 2 (Czech Republic), Fax: (+420)?22195‐1253;2. MR Spectroscopy, MR Unit, Department of Diagnostic and Interventional Radiology, Institute for Clinical and Experimental Medicine, Vídeňská 1958, 140 21 Praha 4 (Czech Republic);3. Department of Neuroscience, Institute of Experimental Medicine ASCR v.v.i., Vídeňská 1083, 142 20 Praha 4 (Czech Republic);4. Laboratory of Pancreatic Islets, Institute for Clinical and Experimental Medicine, Vídeňská 1958, 140 21 Praha 4 (Czech Republic)
Abstract:A novel bimodal fluorescence/MRI probe based on a cyclodextrin scaffold has been synthesized and characterized. The final agent employs the fluorescein (F) functionality as a fluorescence marker and the GdIII complex of a macrocyclic DOTA‐based ligand (GdL) having one aminobenzyl‐phosphinic acid pendant arm as an MRI probe, and has a statistical composition of (GdL)6.9‐F0.1‐β‐CD. Slow rotational dynamics (governed by a very rigid cyclodextrin scaffold) combined with fast water exchange (ensured by the chosen macrocyclic ligand) resulted in a high relaxivity of ~22 s?1 mM ?1 per GdIII or ~150 s?1 mM ?1 per molecule of the final conjugate (20 MHz, 25 °C). In vitro labelling of pancreatic islets (PIs) and rat mesenchymal stem cells has been successfully performed. The agent is not cytotoxic and is easily internalized into cells. The labelled cells can be visualized by MRI, as proved by the detection of individual labelled PIs. A fluorescence study performed on mesenchymal stem cells showed that the agent stays in the intracellular space for a long time.
Keywords:cell tracking  contrast agents  gadolinium  imaging agents  magnetic resonance imaging
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