lontophoretic Transport of a Homologous Series of Ionized and Nonionized Model Compounds: Influence of Hydrophobicity and Mechanistic Interpretation
- 1 January 1989
- journal article
- Published by Springer Nature in Pharmaceutical Research
- Vol. 6 (1) , 85-90
- https://doi.org/10.1023/a:1015812005467
Abstract
An in vitro study was carried out to elucidate the mechanisms controlling iontophoretic transport. The investigation focused on three areas, including the nature of the permeant (state of ionization and hydrophobicity), skin structures (hair follicle distribution and stratum corneum), and various parameters influencing iontophoresis (current, permeant concentration, and competitive ion effects). The data indicate that iontophoretic-facilitated transport is essentially pore mediated and that the transport of ionized and nonionized molecules may be enhanced through the pore-type pathway. The data presented show that iontophoresis has a detrimental effect on the lipoidal transport pathway and that the transport of more hydrophobic nonionized molecules is decreased compared with passive diffusion. The iontophoretic enhancement values decreased linearly with increasing alkyl chain length of n-alkanols. The iontophoretic permeability coefficients of ionized n-alkanoic acids was shown to decrease with increasing permeant hydrophobicity.Keywords
This publication has 7 references indexed in Scilit:
- Comparison Between the Lontophoretic and Passive Transport of Thyrotropin Releasing Hormone Across Excised Nude Mouse SkinJournal of Pharmaceutical Sciences, 1986
- lontophoretic Devices for Drug DeliveryPharmaceutical Research, 1986
- Pathways of ionic flow through human skin in vivoActa Dermato-Venereologica, 1984
- Hydration and Percutaneous Absorption IV: Influence of Hydration on n-Alkanol Permeation Through Rat Skin; Comparison with Hairless and Swiss MiceJournal of Pharmaceutical Sciences, 1983
- Hydration and Percutaneous Absorption III: Influences of Stripping and Scalding on Hydration Alteration of the Permeability of Hairless Mouse Skin to Water and n-AlkanolsJournal of Pharmaceutical Sciences, 1982
- INCREASED PENETRATION OF NON-ELECTROLYTES INTO MOUSE SKIN DURING IONTOPHORETIC WATER TRANSPORT (IONTOHYDROKINESIS)1980
- Permeability of the skinPhysiological Reviews, 1971