4.7 Review

Improved Topical Drug Delivery: Role of Permeation Enhancers and Advanced Approaches

Journal

PHARMACEUTICS
Volume 14, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/pharmaceutics14122818

Keywords

transdermal; drug delivery; stratum corneum; permeation enhancers; ionic liquids; cell penetration peptides; microneedle

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Delivery of drugs via transdermal routes offers advantages, but overcoming the skin's barrier properties remains challenging. Chemical permeation enhancers (CPEs) can improve transdermal drug delivery, but may have side effects. With advancements in analytical techniques, synthetic chemistry, and combinatorial studies, CPEs-aided transdermal drug delivery is expected to reach its full potential.
The delivery of drugs via transdermal routes is an attractive approach due to ease of administration, bypassing of the first-pass metabolism, and the large skin surface area. However, a major drawback is an inability to surmount the skin's stratum corneum (SC) layer. Therefore, techniques reversibly modifying the stratum corneum have been a classical approach. Surmounting the significant barrier properties of the skin in a well-organised, momentary, and harmless approach is still challenging. Chemical permeation enhancers (CPEs) with higher activity are associated with certain side effects restricting their advancement in transdermal drug delivery. Furthermore, complexity in the interaction of CPEs with the skin has led to difficulty in elucidating the mechanism of action. Nevertheless, CPEs-aided transdermal drug delivery will accomplish its full potential due to advancements in analytical techniques, synthetic chemistry, and combinatorial studies. This review focused on techniques such as drug-vehicle interaction, vesicles and their analogues, and novel CPEs such as lipid synthesis inhibitors (LSIs), cell-penetrating peptides (CPPs), and ionic liquids (ILs). In addition, different types of microneedles, including 3D-printed microneedles, have been focused on in this review.

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