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1.
Nanoscale ; 10(1): 469-479, 2017 Dec 21.
Artículo en Inglés | MEDLINE | ID: mdl-29227500

RESUMEN

Highly hydrophilic, responsive nanogels are attractive as potential systems for the topical delivery of bioactives encapsulated in their three-dimensional polymeric scaffold. Yet, these drug carrier systems suffer from drawbacks for efficient delivery of hydrophobic drugs. Addressing this, ß-cyclodextrin (ßCD) could be successfully introduced into the drug carrier systems by exploiting its unique affinity toward dexamethasone (DXM) as well as its role as topical penetration enhancer. The properties of ßCD could be combined with those of thermoresponsive nanogels (tNGs) based on dendritic polyglycerol (dPG) as a crosslinker and linear thermoresponsive polyglycerol (tPG) inducing responsiveness to temperature changes. Electron paramagnetic resonance (EPR) studies localized the drug within the hydrophobic cavity of ßCD by differences in its mobility and environmental polarity. In fact, the fabricated carriers combining a particulate delivery system with a conventional penetration enhancer, resulted in an efficient delivery of DXM to the epidermis and the dermis of human skin ex vivo (enhancement compared to commercial DXM cream: ∼2.5 fold in epidermis, ∼30 fold in dermis). Furthermore, DXM encapsulated in ßCD tNGs applied to skin equivalents downregulated the expression of proinflammatory thymic stromal lymphopoietin (TSLP) and outperformed a commercially available DXM cream.

2.
Eur J Pharm Biopharm ; 116: 94-101, 2017 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-27756683

RESUMEN

The skin and especially the stratum corneum (SC) act as a barrier and protect epidermal cells and thus the whole body against xenobiotica of the external environment. Topical skin treatment requires an efficient drug delivery system (DDS). Polymer-based nanocarriers represent novel transport vehicles for dermal application of drugs. In this study dendritic core-multishell (CMS) nanoparticles were investigated as promising candidates. CMS nanoparticles were loaded with a drug (analogue) and were applied to penetration studies of skin. We determined by dual-frequency electron paramagnetic resonance (EPR) how dexamethasone (Dx) labelled with 3-carboxy-2,2,5,5-tetramethyl-1-pyrrolidinyloxy (PCA) is associated with the CMS. The micro-environment of the drug loaded to CMS nanoparticles was investigated by pulsed high-field EPR at cryogenic temperature, making use of the fact that magnetic parameters (g-, A-matrices, and spin-lattice relaxation time) represent specific probes for the micro-environment. Additionally, the rotational correlation time of spin-labelled Dx was probed by continuous wave EPR at ambient temperature, which provides independent information on the drug environment. Furthermore, the penetration depth of Dx into the stratum corneum of porcine skin after different topical applications was investigated. The location of Dx in the CMS nanoparticles is revealed and the function of CMS as penetration enhancers for topical application is shown.


Asunto(s)
Dexametasona/química , Dexametasona/metabolismo , Nanopartículas/química , Nanopartículas/metabolismo , Piel/metabolismo , Administración Cutánea , Animales , Portadores de Fármacos/química , Portadores de Fármacos/metabolismo , Sistemas de Liberación de Medicamentos/métodos , Espectroscopía de Resonancia por Spin del Electrón/métodos , Polímeros/química , Polímeros/metabolismo , Absorción Cutánea/efectos de los fármacos , Marcadores de Spin , Porcinos
3.
Int J Pharm ; 501(1-2): 271-7, 2016 Mar 30.
Artículo en Inglés | MEDLINE | ID: mdl-26853315

RESUMEN

Dendritic core-multi shell (CMS) particles are polymer based systems consisting of a dendritic polar polyglycerol polymer core surrounded by a two-layer shell of nonpolar C18 alkyl chains and hydrophilic polyethylene glycol. Belonging to nanotransport systems (NTS) they allow the transport and storage of molecules with different chemical characters. Their amphipihilic character CMS-NTS permits good solubility in aqueous and organic solutions. We showed by multifrequency electron paramagnetic resonance (EPR) spectroscopy that spin-labeled 5-doxyl stearic acid (5DSA) can be loaded into the CMS-NTS. Furthermore, the release of 5DSA from the carrier into the stratum corneum of porcine skin was monitored ex vivo by EPR spectroscopy. Additionally, the penetration of the CMS-NTS into the skin was analyzed by fluorescence microscopy using indocarbocyanine (ICC) covalently bound to the nanocarrier. Thereby, no transport into the viable skin was observed, whereas the CMS-NTS had penetrated into the hair follicles down to a depth of 340 µm ± 82 µm. Thus, it could be shown that the combined application of fluorescence microscopy and multi-frequency EPR spectroscopy can be an efficient tool for investigating the loading of spin labeled drugs to nanocarrier systems, drug release and penetration into the skin as well as the localization of the NTS in the skin.


Asunto(s)
Dendrímeros/administración & dosificación , Portadores de Fármacos/administración & dosificación , Glicerol/administración & dosificación , Nanoestructuras/administración & dosificación , Polietilenglicoles/administración & dosificación , Polímeros/administración & dosificación , Piel/metabolismo , Ácidos Esteáricos/administración & dosificación , Administración Cutánea , Animales , Carbocianinas/administración & dosificación , Carbocianinas/química , Dendrímeros/química , Portadores de Fármacos/química , Espectroscopía de Resonancia por Spin del Electrón , Colorantes Fluorescentes/administración & dosificación , Colorantes Fluorescentes/química , Glicerol/química , Folículo Piloso/metabolismo , Técnicas In Vitro , Microscopía Fluorescente , Nanoestructuras/química , Polietilenglicoles/química , Polímeros/química , Absorción Cutánea , Ácidos Esteáricos/química , Porcinos
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