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Transport Properties of Ibuprofen Encapsulated in Cyclodextrin Nanosponge Hydrogels: A Proton HR-MAS NMR Spectroscopy Study
Published on: August 15, 2016
β-cyclodextrin nanosponges as multifunctional ingredient in water-containing semisolid formulations for skin delivery
Claudia Conte1, Fabrizio Caldera2, Ovidio Catanzano1
1Drug Delivery Laboratory, Department of Pharmacy, University of Napoli Federico II, Napoli 80131, Italy.
Abstract:
A β-cyclodextrin nanosponge cross-linked with pyromellitic dianhydride (βNS-PYRO) is reported for the first time as multifunctional ingredient in semisolid formulations for drug delivery to the skin. The role of βNS-PYRO on solubilization and stabilization of the photosensitizer benzoporphyrin-derivative monoacid ring A (BPDMA) and all-trans retinoic acid (atRA) as well as its effect on skin permeation of diclofenac (DIC) was investigated. Aqueous solutions, gels, and cream-gels were prepared from mixtures of βNS-PYRO with a conventional gelling agent at specific ratios. The incorporation of BPDMA in βNS-PYRO water solutions prevented its aggregation and gave kinetically stable complexes with high photostability and singlet oxygen generation upon irradiation. atRA incorporated in the βNS-PYRO-containing gel demonstrated a remarkable stability as compared with the formulation without βNS-PYRO, resulting in an eightfold increase of its lifetime. Skin permeation studies highlighted that βNS-PYRO in gels and cream-gels containing DIC significantly decreased the amount of drug permeated through the skin while increasing its amount in stratum corneum and viable epidermis. Overall, swellable βNS-PYRO turns to be a multifunctional coingredient with potential in topical monophasic and biphasic formulations to stabilize light-sensitive drugs and to localize the action of highly penetrating drugs in the external layers of skin.
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