Development of 3D printed microneedles of varied needle geometries and lengths, designed to improve the dermal delivery of topically applied psoriasis treatments.

Eur J Pharm Biopharm

Eshelman School of Pharmacy, Department of Pharmacoengineering and Molecular Pharmacology, Center for Nano and Drug Delivery, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Published: November 2024

AI Article Synopsis

  • * Different needle geometries (square pyramidal, conical, and obelisk) were tested for their ability to penetrate skin and deliver a corticosteroid (betamethasone dipropionate) through ex-vivo porcine skin.
  • * Results revealed that obelisk-shaped MAPs were more durable and, when combined with the oleogel-based formulation, allowed for significantly better penetration of the corticosteroid, especially with longer needles.

Article Abstract

The aim of this study was to investigate the impact of using microneedle patches in addition to topical therapy for the treatment of psoriasis. Using continuous liquid interface production (CLIP) 3D printing we manufactured round microneedle array patches (MAPs) with a diameter of 14 mm. Needle geometries were varied from square pyramidal, conical, and obelisk, with varied needle lengths of 400 µm, 600 µm, 800 µm, or 1000 µm. MAPs were characterized for force to fracture, skin penetration, skin damage, as well as their ability to deliver a novel oleogel-based corticosteroid (betamethasone dipropionate (BDP) formulation into ex-vivo porcine skin. We found that the obelisk shaped MAPs are more durable compared to the conical and square pyramidal-shaped MAPs. When the obelisk shaped MAPs were used in combination with the oleogel-based BDP formulation, the amount of BDP penetrating the skin was significantly increased with greater needle lengths.

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Source
http://dx.doi.org/10.1016/j.ejpb.2024.114523DOI Listing

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