Microneedles integrated with crystallinity control for poorly water-soluble drugs: Enhanced bioavailability and innovative controlled release systemopen access
- Authors
- Woo, Mi Ran; Kim, Jung Suk; Cheon, Seunghyun; Ji, Sang Hun; Park, Seonghyeon; Woo, Sanghyun; Kim, Jong Oh; Jin, Sung Giu; Choi, Han-Gon
- Issue Date
- Nov-2024
- Publisher
- Elsevier Ltd
- Keywords
- Drug crystallinity; Mechanical properties; Microneedle; Release; Skin permeability; Transdermal drug delivery
- Citation
- Materials and Design, v.247, pp 1 - 14
- Pages
- 14
- Indexed
- SCIE
SCOPUS
- Journal Title
- Materials and Design
- Volume
- 247
- Start Page
- 1
- End Page
- 14
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/120769
- DOI
- 10.1016/j.matdes.2024.113371
- ISSN
- 0264-1275
1873-4197
- Abstract
- The purpose of this study was to develop innovative microneedles with drug crystallinity control for the fast or sustained release of poorly water-soluble drugs. Povidone was determined as a suitable polymer following hydrophilic polymer testing using solubilization screening technique. Microneedles were fabricated by altering the drug-to-polymer weight ratios. Their mechanical properties, crystallinity, solubility, release, skin permeability and transdermal pharmacokinetics in rats were assessed. The optimal crystalline and amorphous microneedles were composed of drug/polymer at weight ratios of 1:0.03 and 1:2.5, respectively. They showed excellent insertion in rat skin with a puncture rate above 80%. Compared to drug powder or solution, they increased drug solubility, release and skin permeability. Crystalline microneedles gave sustained release and plasma concentration profiles, while amorphous microneedles provided a fast profile. Amorphous microneedles offered significantly faster Tmax and two-fold higher area under the concentration–time curve (AUC), indicating better transdermal bioavailability. In the safety test, microneedle-treated rat skin was recovered to normal within three days without any irritations. Thus, the drug crystallinity could play a significant role in the release of microneedles, suggesting their potential as a transdermal drug delivery system for controlling the release of poorly water-soluble drugs and improving their transdermal bioavailability. © 2024 The Authors
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