摘要
Polymer microneedles (MNs) have gained increasing attention as a minimally invasive method for efficiently delivering drugs and vaccines in a patient-friendly manner. Herein, an easy and mild process with O2 plasma treatment was used to fabricate polyvinylpyrrolidone (PVP)-polyvinyl alcohol (PVA) MN patches, and efficient, sustained transdermal delivery was achieved. The diffusion rate of the entrained molecules could be controlled by adjusting the ratio of PVP-PVA. Optical coherence tomography was used to monitor the in vitro penetration in real time and to measure the penetration depth. Rhodamine 6G and fluorescein isothiocyanate-labeled bovine serum albumin (BSA-FITC) were used to explore the potential for using partially dissolving MNs as a transdermal delivery device. Confocal microscopy images revealed that the model drug can gradually diffuse from the puncture sites to a deeper depth. The drug-release profile also demonstrated that the PVP-PVA MNs can provide a successful and sustained release and that the transdermal delivery rate was regulated by the PVP-PVA ratio. Furthermore, the two-stage processing strategy developed in this study provides a simple and easy method for localizing the drug in the needle. The partially dissolving MNs developed in this study may serve as a promising device for controlled drug release and for biological storage applications.
| 原文 | 英語 |
|---|---|
| 頁(從 - 到) | 276-285 |
| 頁數 | 10 |
| 期刊 | Journal of Materials Chemistry B |
| 卷 | 3 |
| 發行號 | 2 |
| DOIs | |
| 出版狀態 | 已出版 - 14 01 2015 |
文獻附註
Publisher Copyright:© 2015 The Royal Society of Chemistry.
指紋
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