Nanofiber as a novel vehicle for transdermal delivery of therapeutic agents: challenges and opportunities

L Kumar, S Verma, K Joshi, P Utreja… - Future Journal of …, 2021 - Springer
L Kumar, S Verma, K Joshi, P Utreja, S Sharma
Future Journal of Pharmaceutical Sciences, 2021Springer
Background Transdermal delivery of drugs is a quite challenging task for pharmaceutical
scientists. The transdermal route is preferred over the oral route due to various advantages
like avoidance of the first-pass effect, non-invasiveness, and high patient compliance.
Therefore, it is necessary to develop an effective carrier system that enables the effective
passage of the drug through the dermal barrier. Main body of abstract Various novel drug
delivery systems are used to enhance the permeation of a variety of drugs through the skin …
Background
Transdermal delivery of drugs is a quite challenging task for pharmaceutical scientists. The transdermal route is preferred over the oral route due to various advantages like avoidance of the first-pass effect, non-invasiveness, and high patient compliance. Therefore, it is necessary to develop an effective carrier system that enables the effective passage of the drug through the dermal barrier.
Main body of abstract
Various novel drug delivery systems are used to enhance the permeation of a variety of drugs through the skin barrier. Researchers around the globe have explored nanofibers for the transdermal delivery of various therapeutic agents. Nanofibers are designed to have a high concentration of therapeutic agents in them promoting their flux through various skin layers. Polymeric nanofibers can be explored for the loading of both hydrophilic and lipophilic drugs. Biopolymer-based nanofibers have been also explored for transdermal delivery. They are capable of controlling the release of therapeutic agents for a prolonged time.
Short conclusion
The literature presented in this review paper provides significant proof that nanofibers will have an intense impact on the transdermal delivery of different bioactive molecules in the future.
Graphic abstract
Springer
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