自愈水凝胶
透皮
胶粘剂
生物相容性
聚合
材料科学
粘附
药物输送
乙烯醇
化学工程
复合材料
高分子化学
聚合物
化学
纳米技术
冶金
工程类
药理学
图层(电子)
医学
作者
Chelladurai Karthikeyan Balavigneswaran,Vaibhav Jaiswal,Venkatesan Ramya,Karuppiah Prakash Shyam,Manoj Kumar Sundaram,T. K. Vasudha,W Aadinath,Akhil Ravikumar,Hari Vishal Saravanan,Vignesh Muthuvijayan
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2023-01-04
卷期号:24 (2): 724-738
被引量:12
标识
DOI:10.1021/acs.biomac.2c01168
摘要
Transdermal patch for local drug delivery has attained huge attention as an attractive alternative to existing drug delivery techniques as it is painless and user-friendly. However, most adhesive hydrogels either do not have adequate adhesion with the skin or cause discomfort while being removed from the skin surface due to excessive adhesion. To address this challenge, we developed an adhesive hydrogel based on laponite-confined dopamine polymerization as a transdermal patch. Laponite RDS nanoclay was used to control the hydrogel's viscous behavior and dopamine polymerization. The laponite polymerized polydopamine (l-PDA) was incorporated into poly(vinyl alcohol) (PVA) to make the PVA-l-PDA hydrogel. The laponite-confined polymerization improved the hydrogels' water contact angle and adhesion strength. The adhesion strength of the PVA-l-PDA hydrogel was adequate to adhere to the evaluated goat skin, glass, and polypropylene surfaces. Notably, the PVA-l-PDA hydrogel was easy to peel off from the skin. Further, we evaluated the drug release profile in goat skin using lidocaine as a model drug. We observed the controlled release of lidocaine from the PVA-l-PDA hydrogel compared to the PVA-PDA hydrogel. In addition, the nanoclay-confined adhesive hydrogel did not show any cytotoxic effect in fibroblasts. Altogether, PVA-l-PDA hydrogels offer appropriate adhesive strength, toughness, and biocompatibility. Thus, the PVA-l-PDA hydrogel has the potential to be an efficient transdermal patch.
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