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Biomedical subjects

R C Vasavada

Publications and source records attributed to R C Vasavada.

6 recordsLinked to original sources

Transdermal delivery of isoproterenol HCl: an investigation of stability, solubility, partition coefficient, and vehicle effects.

Effects of solubility, partition coefficient, and selected adjuvants (propylene glycol and Azone) on percutaneous penetration of isoproterenol HCl have been investigated using human cadaver skin. Isoproterenol was found to be stable (less than 1% decomposition) for 24 hr at 22 +/- 0.5 degrees C in the pH range 1 to 7 in the following solvents: water, normal saline, propylene glycol and a series of propylene glycol-water mixtures (10, 20, 40, and 60%; v/v); however, decomposition was significant beyond pH 8. In normal saline, the rate of decomposition increased significantly with an increase in temperature to 37 degrees C. The solubility of isoproterenol HCl decreased and its skin/vehicle partition coefficient increased with increasing proportions of propylene glycol in the vehicle, while the product of the solubility and partition coefficient appeared to plateau at 20% propylene glycol in water. Optimal penetration enhancing effects of Azone were seen when incorporated at a concentration of 1% (v/v) in the 20% (v/v) propylene glycol-water blend and, more significantly, when skin was pretreated with pure Azone for 60 min prior to application of the drug formulation.

Azepines

In vitro release of salicylic acid from lanolin alcohols-ethylcellulose films.

Lanolin alcohols-ethylcellulose films were investigated as a potential drug delivery system for the controlled release of salicylic acid. The effects of changes in film composition, drug concentration, drug solubility, and stirrer speed on the in vitro release of salicylic acid have been examined. The drug release has been found to obey a diffusion-controlled matrix model and square root of time release profile both in the suspension and solution cases.

Alcohols

Evaluation of lanolin alcohol films and kinetics of triamcinolone acetonide release.

The film-forming potential of lanolin alcohol was evaluated. Inclusion of ethylcellulose in lanolin alcohol improved film integrity. The hardness and modulus of elasticity of these lanolin alcohol-ethylcellulose films were improved by incorporating propylene glycol or cetyl alcohol. Triamcinolone acetonide release from selected film compositions was investigated. The data were analyzed from the viewpoint of the first-order kinetic theory and the release from a planar system having a homogeneous or granular matrix. The results suggest that the drug release follows a diffusion-controlled matrix model and a square root of time release profile. The release rate constants were proportional to drug concentration. Drug release was maximal from a system containing the drug in a near-saturated solution.

Administration, Topical