Poly(methyl vinyl ether--maleic anhydride) (PMVEMA) of 119 and 139 molecular weights (P119 and P139, respectively) were electrospun to evaluate the resulting fibers as a topical delivery vehicle for (L-)menthol. Thus, electrospinning parameters were optimized for the production of uniform bead-free fibers from 12% / PMVEMA (±2.3% / menthol) solutions, and their morphology and size were characterized by field emission scanning electron microscopy (FESEM). The fibers of P119 (Fs) and P139 (Fs) showed average diameter sizes of approximately 534 and 664 nm, respectively, when unloaded, and 837 and 1369 nm when loaded with menthol. The morphology of all types of fibers was cylindrical except for Fs, which mostly displayed a double-ribbon-like shape. Gas chromatography-mass spectrometry (GC-MS) analysis determined that not only was the menthol encapsulation efficiency higher in Fs (92% versus 68% in Fs) but also that its stability over time was higher, given that in contrast with Fs, no significant losses in encapsulated menthol were detected in the Fs after 10 days post-production. Finally, in vitro biological assays showed no significant induction of cytotoxicity for any of the experimental fibers or in the full functionality of the encapsulated menthol, as it achieved equivalent free-menthol levels of activation of its specific receptor, the (human) transient receptor potential cation channel subfamily M (melastatin) member 8 (TRPM8).
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http://dx.doi.org/10.3390/pharmaceutics13111845 | DOI Listing |
Pharmaceutics
November 2021
Institute of Research Development and Innovation in Biotechnology of Elche (IDiBE), Miguel Hernández University (UMH), 03202 Elche, Spain.
Poly(methyl vinyl ether--maleic anhydride) (PMVEMA) of 119 and 139 molecular weights (P119 and P139, respectively) were electrospun to evaluate the resulting fibers as a topical delivery vehicle for (L-)menthol. Thus, electrospinning parameters were optimized for the production of uniform bead-free fibers from 12% / PMVEMA (±2.3% / menthol) solutions, and their morphology and size were characterized by field emission scanning electron microscopy (FESEM).
View Article and Find Full Text PDFCrit Care
April 2016
Fondazione IRCCS Ca’ Granda - Ospedale maggiore Policlinico, Milan, Italy
BMC Neurosci
August 2016
Institut de Neuroscienes de la Timone (INT), CNRS & Aix-Marseille University, 27 Boulevard Jean Moulin, 13005 Marseille, France
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