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Development of nanoparticles based on amphiphilic cyclodextrins for the delivery of active substances.
Augis, Luc; Nerbø Reiten, Ingeborg; Førde, Jan-Lukas; Casas-Solvas, Juan M; Sizun, Christina; Bizien, Thomas; Rajkovic, Ivan; Larquet, Eric; Michelet, Alexandre; Collot, Mayeul; Lesieur, Sylviane; Herfindal, Lars; Legrand, François-Xavier.
Afiliación
  • Augis L; Université Paris-Saclay, CNRS, Institut Galien Paris-Saclay, 91400 Orsay, France.
  • Nerbø Reiten I; Centre for Pharmacy, Department of Clinical Science, University of Bergen, Bergen, Norway.
  • Førde JL; Centre for Pharmacy, Department of Clinical Science, University of Bergen, Bergen, Norway; Department of Internal Medicine, Haukeland University Hospital, 5021 Bergen, Norway.
  • Casas-Solvas JM; Department of Chemistry and Physics, University of Almería, Ctra de Sacramento s/n, E-04120 Almería, Spain.
  • Sizun C; Université Paris-Saclay, CNRS, Institut de Chimie des Substances Naturelles, UPR 2301, 91198 Gif-sur-Yvette, France.
  • Bizien T; Université Paris-Saclay, Synchrotron Soleil, 91190 Saint-Aubin, France.
  • Rajkovic I; SSRL, SLAC National Accelerator Lab, Menlo Park, CA, USA.
  • Larquet E; Laboratoire de Physique de la Matière Condensée (PMC), CNRS, Ecole Polytechnique, Institut Polytechnique de Paris, 91120 Palaiseau, France.
  • Michelet A; Applications Development Lab France, PerkinElmer, Villebon-sur-Yvette, France.
  • Collot M; Faculté de Pharmacie, Laboratoire de Bioimagerie et Pathologies, UMR 7021 CNRS, Illkirch, France.
  • Lesieur S; Université Paris-Saclay, CNRS, Institut Galien Paris-Saclay, 91400 Orsay, France.
  • Herfindal L; Centre for Pharmacy, Department of Clinical Science, University of Bergen, Bergen, Norway.
  • Legrand FX; Université Paris-Saclay, CNRS, Institut Galien Paris-Saclay, 91400 Orsay, France. Electronic address: francois-xavier.legrand@universite-paris-saclay.fr.
Int J Pharm ; 651: 123723, 2024 Feb 15.
Article en En | MEDLINE | ID: mdl-38110013
ABSTRACT
Although amphiphilic cyclodextrin derivatives (ACDs) serve as valuable building blocks for nanomedicine formulations, their widespread production still encounters various challenges, limiting large-scale manufacturing. This work focuses on a robust alternative pathway using mineral base catalysis to transesterify ß-cyclodextrin with long-chain vinyl esters, yielding ACD with modular and controlled hydrocarbon chain grafting. ACDs with a wide range of degrees of substitution (DS) were reliably synthesized, as indicated by extensive physicochemical characterization, including MALDI-TOF mass spectrometry. The influence of various factors, including the type of catalyst and the length of the hydrocarbon moiety of the vinyl ester, was studied in detail. ACDs were assessed for their ability to form colloidal suspensions by nanoprecipitation, with or without PEGylated phospholipid. Small-angle X-ray scattering and cryo-electron microscopy revealed the formation of nanoparticles with distinct ultrastructures depending on the DS an onion-like structure for low and very high DS, and reversed hexagonal organization for DS between 4.5 and 6.1. We confirmed the furtivity of the PEGylated versions of the nanoparticles through complement activation experiments and that they were well tolerated in-vivo on a zebrafish larvae model after intravenous injection. Furthermore, a biodistribution experiment showed that the nanoparticles left the bloodstream within 10 h after injection and were phagocytosed by macrophages.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Ciclodextrinas / Nanopartículas Límite: Animals Idioma: En Revista: Int J Pharm Año: 2024 Tipo del documento: Article País de afiliación: Francia

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Ciclodextrinas / Nanopartículas Límite: Animals Idioma: En Revista: Int J Pharm Año: 2024 Tipo del documento: Article País de afiliación: Francia
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