Search PubMed⌕ Search

PubMed · 16292112

Methylphenidate transdermal system.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

David A Mays, Robert Findling. 2005. Methylphenidate transdermal system.. https://doi.org/10.1097/01.chi.0000183461.18907.bc

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Impact of antinucleants on transdermal delivery of testosterone from a spray.

The goal was to explore whether the incorporation of antinucleant polymers into a testosterone spray formulation could stabilize a putative supersaturated state and improve the delivery of the drug across the skin. Several antinucleants were screened using differential scanning calorimetry (DSC) and two candidates showed particular promise: a cyclodextrin derivative (RAMEB) and a vinylpyrrolidone/vinyl acetate copolymer (Kollidon VA64). These agents also improved significantly the long-term stability of saturated solutions of the drug. Further, using the method of mixed cosolvents, it was possible to create, in the presence of 5% w/v antinucleant polymer, supersaturated ethanol/propylene glycol/water (4:1:1 v/v) solutions of the drug with degrees of saturation between 1.4 and 2.6; however, these metastable systems existed only transiently under carefully controlled conditions and had reverted back to equilibrium solubilities of the drug within 6 h. When the same solutions were administered to hairless rat skin in vitro from mechanical sprays, no improvement in testosterone delivery, relative to a nonstabilized control, was observed. It appears, therefore, that the in situ crystallization process of the drug is more complex and incompletely understood (and cannot be predicted from DSC experiments). The complicated evaporation/volatilization process, which takes place when a spray is pulverized, requires better characterization before the use of supersaturation for testosterone delivery can be optimized.

Administration, Cutaneous↗

Elastic liposomes mediated transdermal delivery of an anti-hypertensive agent: propranolol hydrochloride.

One major problem encountered in transdermal drug delivery is the low permeability of drugs through the skin barrier. In the present investigation ultradeformable lipid vesicles, that is, elastic liposomes were prepared incorporating propranolol hydrochloride for enhanced transdermal delivery. Elastic liposomes bearing propranolol hydrochloride were prepared by conventional rotary evaporation method and characterized for various parameters including vesicles shape and surface morphology, size and size distribution, entrapment efficiency, elasticity, turbidity, and in vitro drug release. In vitro flux, enhancement ratio (ER), and release pattern of propranolol hydrochloride were calculated for transdermal delivery. In vivo study conducted on male albino rats (Sprague Dawley) was also taken as a measure of performance of elastic liposomal, liposomal, and plain drug solution. The better permeation through the skin was confirmed by confocal laser scanning microscopy (CLSM). Results indicate that the elastic liposomal formulation for transdermal delivery of propranolol hydrochloride provides better transdermal flux, higher entrapment efficiency, ability as a self-penetration enhancer and effectiveness for transdermal delivery as compared to liposomes.

Administration, Cutaneous↗

Transdermal delivery of nonsteroidal anti-inflammatory drugs mediated by polyamidoamine (PAMAM) dendrimers.

Nonsteroidal anti-inflammatory drugs (NSAIDs) are among the most frequently used drugs in the world, primarily for symptoms associated with osteoarthritis and other chronic musculoskeletal conditions. However, adverse effects caused by oral administration, such as local or systemic disturbance in the gastrointestinal tract, have limited the clinical applications of these drugs. In the present study we have assessed the ability of polyamidoamine (PAMAM) dendrimers to facilitate transdermal delivery of NSAIDs, using Ketoprofen and Diflunisal as model drugs. In vitro permeation studies with excised rat skins indicated that PAMAM dendrimers significantly enhanced the accumulative permeated amount of both drugs after 24 h, as compared to drug suspensions without PAMAM dendrimers. Similarly, anti-nociceptive studies using the acetic acid-induced writhing model in mice showed a prolonged pharmacodynamic profile for the NSAIDs-PAMAM dendrimer complex after transdermal administration. In addition, blood drug level studies revealed that the bioavailability was 2.73 times higher for the Ketoprofen-PAMAM dendrimer complex and 2.48 times higher for the Diflunisal-PAMAM dendrimer complex, respectively, than the pure drug suspensions. These results demonstrated that PAMAM dendrimers can effectively facilitate skin penetration of NSAIDs and may have the potential applications for the development of new transdermal formulations.

Administration, Cutaneous↗