The design, synthesis and photophysical characterization of four new luminescent glycosylated luminophores based on dinuclear rhenium complexes, namely Glyco-Re, are described. The derivatives have the general formula [Re2(μ-Cl)2(CO)6(μ-pydz-R)] (R-pydz = functionalized 1,2-pyridazine), where a sugar residue (R) is covalently bound to the pyridazine ligand in the β position. Different synthetic pathways have been investigated including the so-called neo-glycorandomization procedure, affording stereoselectively glyco-conjugates containing glucose and maltose in a β anomeric configuration. A multivalent dinuclear rhenium glycodendron bearing three glucose units is also synthesized. All the Glyco-Re conjugates are comprehensively characterized and their photophysical properties and cellular internalization experiments on human cervical adenocarcinoma (HeLa) cells are reported. The results show that such Glyco-Re complexes display interesting bio-imaging properties, i.e. high cell permeability, organelle selectivity, low cytotoxicity and fast internalization. These findings make the presented Glyco-Re derivatives efficient phosphorescent probes suitable for cell imaging application.

Palmioli, A., Aliprandi, A., Septiadi, D., Mauro, M., Bernardi, A., De Cola, L., et al. (2017). Glyco-functionalized dinuclear rhenium(i) complexes for cell imaging. ORGANIC & BIOMOLECULAR CHEMISTRY, 15(7), 1686-1699 [10.1039/c6ob02559e].

Glyco-functionalized dinuclear rhenium(i) complexes for cell imaging

PALMIOLI, ALESSANDRO
Primo
;
2017

Abstract

The design, synthesis and photophysical characterization of four new luminescent glycosylated luminophores based on dinuclear rhenium complexes, namely Glyco-Re, are described. The derivatives have the general formula [Re2(μ-Cl)2(CO)6(μ-pydz-R)] (R-pydz = functionalized 1,2-pyridazine), where a sugar residue (R) is covalently bound to the pyridazine ligand in the β position. Different synthetic pathways have been investigated including the so-called neo-glycorandomization procedure, affording stereoselectively glyco-conjugates containing glucose and maltose in a β anomeric configuration. A multivalent dinuclear rhenium glycodendron bearing three glucose units is also synthesized. All the Glyco-Re conjugates are comprehensively characterized and their photophysical properties and cellular internalization experiments on human cervical adenocarcinoma (HeLa) cells are reported. The results show that such Glyco-Re complexes display interesting bio-imaging properties, i.e. high cell permeability, organelle selectivity, low cytotoxicity and fast internalization. These findings make the presented Glyco-Re derivatives efficient phosphorescent probes suitable for cell imaging application.
Articolo in rivista - Articolo scientifico
Biochemistry; Physical and Theoretical Chemistry; Organic Chemistry
English
2017
15
7
1686
1699
none
Palmioli, A., Aliprandi, A., Septiadi, D., Mauro, M., Bernardi, A., De Cola, L., et al. (2017). Glyco-functionalized dinuclear rhenium(i) complexes for cell imaging. ORGANIC & BIOMOLECULAR CHEMISTRY, 15(7), 1686-1699 [10.1039/c6ob02559e].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/151442
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