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Harmonized tuning of nucleic acid and lectin binding properties with multivalent cyclodextrins for macrophage-selective gene delivery

AutorMéndez-Ardoy, Alejandro ; Díaz-Moscoso, Alejandro; Ortiz-Mellet, Carmen; Di Giorgio, Christophe; Vierling, Pierre; Benito, Juan M. ; García-Fernández, José Manuel
Fecha de publicación2015
EditorRoyal Society of Chemistry (Great Britain)
CitaciónRSC Advances, 5: 76464-76471 (2015)
ResumenPolycationic amphiphilic cyclodextrins (paCDs) have been shown to behave as efficient non-viral gene carriers paralleling the efficacy of commercial vectors towards a variety of cell lines. Their molecular framework and modular design allow the installation of saccharidic antennae to promote specific carbohydrate-protein interactions, thus potentially endowing them with selective targeting abilities. Yet, the presence of these additional functionalities onto the polycationic cluster may hamper paCD self-assembly and nucleic acid condensation. In this report we describe the influence of paCD mannosylation extent on paCD-pDNA nanocomplex stability as well as the consequences of varying glycotope density on mannose-specific lectin recognition and gene delivery capabilites. The work aims at exploring the potential of this approach to optimize both properties in order to modulate cell transfection selectivity.
Versión del editorhttp://dx.doi.org/10.1039/C5RA16087A
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