Title
Effect of an Oxygen-Based Mechanical Drug Delivery System on Percutaneous Permeation of Various Substances In Vitro
Language
English
Description (en)
Transdermal drug administration is an elegant method to overcome various side effects of oral or parenteral drug administration. Nevertheless, due to an effective skin barrier, which is provided by the stratum corneum, transdermal drug delivery is sometimes very slow and ineffective. Thus, the effect of a medical device (DERMADROP TDA) for transdermal penetration of drugs in conjunction with a special vehicle emulsion on percutaneous permeation of several substances (with different physicochemical properties) was investigated in Franz-type diffusion cells with porcine skin over 28 h. This medical device disperses pharmaceutical agents via oxygen flow through an application system, which is used in conjunction with specially developed vehicle substances. Substance permeation of various substances with different physicochemical properties (diclofenac, enrofloxacin, flufenamic acid, indomethacin, and salicylic acid) was examined after application with a pipette and with the medical device. Therefore, acceptor media samples were collected up to 28 h after drug administration. Drug concentration in the acceptor medium was determined via high-performance liquid chromatography. Enhanced permeation was observed for diclofenac, enrofloxacin, flufenamic acid, indomethacin, and salicylic acid after oxygen-based administration. This correlates negatively with the molecular weight. Thus, drug administration can effectively be enhanced by a medical device using oxygen.
Keywords (en)
Diclofenac, Permeation enhancer; Transdermal drug delivery; Franz-type diffusion cell; Porcine skin; Skin absorption; Oxygen
DOI
10.3390/pharmaceutics14122722
Author of the digital object
Anna-Lena  Elksnat  (University of Veterinary Medicine Hannover)
Jessica  Meißner  (University of Veterinary Medicine Hannover)
Jessika Maximiliane  Cavalleri  (University of Veterinary Medicine Vienna)
Karina  Klein  (University of Zurich)
Paula  Zscherpe  (University of Zurich)
Format
application/pdf
Size
383.6 kB
Licence Selected
CC BY 4.0 International
Type of publication
Article
Name of Publication (en)
Pharmaceutics
Pages or Volume
9
Volume
14
Number
12
Publisher
MDPI
Publication Date
2023
Content
Details
Object type
PDFDocument
Format
application/pdf
Created
25.04.2023 12:20:39
This object is in collection
Metadata