• DocumentCode
    3219347
  • Title

    The use of mathematical modeling and simulation tools to study transdermal drug delivery systems

  • Author

    Simon, L. ; Fernandes, M. ; Loney, N.W.

  • Author_Institution
    Otto H. York Dept. of Chem. Eng., New Jersey Inst. of Technol., Newark, NJ, USA
  • fYear
    2005
  • fDate
    2-3 April 2005
  • Firstpage
    269
  • Lastpage
    270
  • Abstract
    A closed-form mathematical solution was obtained for in vitro skin permeation of a drug dissolved in a vehicle. The solution to the mathematical model, which was described by Fickian diffusion equations and appropriate boundary conditions, was derived using Laplace transform methods. The residue theorem was applied to invert the equations from the Laplace domain into the time domain. The closed-form solution, obtained for the present percutaneous drug-delivery model, can be readily applied to many drug/vehicle systems to predict drug-release profiles, reducing the cost associated with extensive experimental procedures. Results showed that both axial and temporal variations In the concentration were significant in the skin. The time required for all of the drug to penetrate through the skin is less for a small dose than for a large dose.
  • Keywords
    Laplace transforms; biodiffusion; drug delivery systems; skin; Fickian diffusion equation; Laplace domain; Laplace transform method; appropriate boundary condition; drug-vehicle systems; in vitro skin permeation; percutaneous drug-delivery model; residue theorem; transdermal drug delivery system; Boundary conditions; Closed-form solution; Costs; Drug delivery; In vitro; Laplace equations; Mathematical model; Predictive models; Skin; Vehicles;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Bioengineering Conference, 2005. Proceedings of the IEEE 31st Annual Northeast
  • Print_ISBN
    0-7803-9105-5
  • Electronic_ISBN
    0-7803-9106-3
  • Type

    conf

  • DOI
    10.1109/NEBC.2005.1432023
  • Filename
    1432023