dc.contributor.author
Giulbudagian, M.
dc.contributor.author
Hönzke, S.
dc.contributor.author
Bergueiro, Julián
dc.contributor.author
Işık, D.
dc.contributor.author
Schumacher, F.
dc.contributor.author
Saeidpour, S.
dc.contributor.author
Lohan, S. B.
dc.contributor.author
Meinke, M. C.
dc.contributor.author
Teutloff, C.
dc.contributor.author
Schäfer-Korting, M.
dc.contributor.author
Yealland, G.
dc.contributor.author
Kleuser, B.
dc.contributor.author
Hedtrich, S.
dc.contributor.author
Calderón, M.
dc.date.accessioned
2019-03-18T12:12:30Z
dc.date.available
2019-03-18T12:12:30Z
dc.identifier.uri
https://refubium.fu-berlin.de/handle/fub188/24165
dc.identifier.uri
http://dx.doi.org/10.17169/refubium-1937
dc.description.abstract
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, β-cyclodextrin (βCD) 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 βCD 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 βCD 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 βCD tNGs applied to skin equivalents downregulated the expression of proinflammatory thymic stromal lymphopoietin (TSLP) and outperformed a commercially available DXM cream.
en
dc.rights.uri
http://www.fu-berlin.de/sites/refubium/rechtliches/Nutzungsbedingungen
dc.subject
thermoresponsive nanogels
en
dc.subject
drug carrier systems
en
dc.subject.ddc
600 Technology, Medicine, Applied sciences::610 Medical sciences; Medicine::615 Pharmacology and therapeutics
dc.title
Enhanced topical delivery of dexamethasone by β-cyclodextrin decorated thermoresponsive nanogels
dc.type
Wissenschaftlicher Artikel
dcterms.bibliographicCitation.doi
10.1039/c7nr04480a
dcterms.bibliographicCitation.journaltitle
Nanoscale
dcterms.bibliographicCitation.pagestart
469
dcterms.bibliographicCitation.pageend
479
dcterms.bibliographicCitation.volume
10
dcterms.bibliographicCitation.url
https://pubs.rsc.org/en/content/articlehtml/2018/nr/c7nr04480a
refubium.affiliation
Physik
refubium.affiliation.other
Institut für Experimentalphysik
refubium.resourceType.isindependentpub
no
dcterms.accessRights.openaire
open access