Spatiotemporal Control of the Formation of Luminescent Lanthanide Complexes in Liposome-Based Nanoreactors

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Publikace nespadá pod Fakultu sportovních studií, ale pod Farmaceutickou fakultu. Oficiální stránka publikace je na webu muni.cz.
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TORRES-HUERTA Aaron VELASQUEZ-HERNANDEZ Miriam de J. TAMARIT-AMOROS Elena RASCHETTI Marina PINKAS Daniel JURČEK Ondřej PEREZ Javier VALKENIER Hennie

Rok publikování 2025
Druh Recenzovaný odborný článek
Časopis / Zdroj ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Fakulta / Pracoviště MU

Farmaceutická fakulta

Citace
www https://onlinelibrary.wiley.com/doi/10.1002/anie.202510471
Doi https://doi.org/10.1002/anie.202510471
Klíčová slova Ion transport; Lanthanide complexes; Liposomes; Nanoreactors; Nanostructures
Přiložené soubory
Popis The controlled mass transfer across compartmentalised environments in synthetic nanoreactors is essential for enhancing precise spatiotemporal manipulation of chemical transformations within confined spaces. In this study, we present a strategy that integrates a synthetic anion transporter in liposome-based nanoreactors, allowing for spatiotemporal control over the formation of metal-organic complexes in liposomes. This approach enables us to effectively modulate the assembly of luminescent lanthanide-benzenedicarboxylate nanostructures. Fluorescence studies demonstrate that the reaction rate can be customised by varying the anion transporter concentration, which dictates the rate of entry of the carboxylate ligand. Changes in the morphology of the liposome nanoreactors due to the assisted transmembrane transport of benzenedicarboxylate were investigated using cryo-TEM and time-resolved SAXS measurements, which revealed a structural transformation of the lipid bilayer during the complex formation. Our findings provide a novel platform for exploring coordination chemistry in nanoscale confinements, opening avenues for the design of biohybrid materials.
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