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可溶解 PVA/PVP 复合微针的制备及力学建模及其生物相容性研究,用于布洛芬的高效经皮传递。

Fabrication and mechanical modelling of dissolvable PVA/PVP composite microneedles with biocompatibility for efficient transdermal delivery of ibuprofen.

机构信息

School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, China.

Xin-Huangpu Joint Innovation Institute of Chinese Medicine, Guangzhou, Guangdong Province, China.

出版信息

J Biomater Sci Polym Ed. 2024 Jun;35(9):1439-1454. doi: 10.1080/09205063.2024.2333627. Epub 2024 Apr 8.

Abstract

Microneedles offer minimally invasive, user-friendly, and subcutaneously accessible transdermal drug delivery and have been widely investigated as an effective transdermal delivery system. Ibuprofen is a common anti-inflammatory drug to treat chronic inflammation. It is crucial to develop microneedle patches capable of efficiently delivering ibuprofen through the skin for the effective treatment of arthritis patients requiring repeated medication. In this study, the mechanical properties of a new type of polymer microneedle were studied by finite element analysis, and the experimental results showed that the microneedle could effectively deliver drugs through the skin. In addition, a high ibuprofen-loaded microneedle patch was successfully prepared by micromolding and subjected to evaluation of its infrared spectrum morphology and dissolve degree. The morphology of microneedles was characterized by scanning electron microscopy, and the mechanical properties were assessed using a built linear stretching system. In the diffusion cell drug release test, the microneedle released 85.2 ± 1.52% (210 ± 3.7 μg) ibuprofen in the modified Franz diffusion within 4 h, exhibiting a higher drug release compared to other drug delivery methods. This study provides a portable, safe and efficient treatment approach for arthritis patients requiring daily repeated medication.

摘要

微针提供微创、用户友好且可经皮进入的透皮药物递送,已被广泛研究作为一种有效的透皮递送系统。布洛芬是一种常用的抗炎药,用于治疗慢性炎症。开发能够通过皮肤有效递送到布洛芬的微针贴片对于需要重复给药的关节炎患者的有效治疗至关重要。在这项研究中,通过有限元分析研究了一种新型聚合物微针的力学性能,实验结果表明微针可以有效地将药物递送到皮肤中。此外,通过微成型成功制备了载药量高的布洛芬微针贴片,并对其红外光谱形态和溶解程度进行了评估。通过扫描电子显微镜对微针的形态进行了表征,并使用内置的线性拉伸系统评估了其力学性能。在扩散池药物释放试验中,微针在 4 小时内以改良的 Franz 扩散释放了 85.2±1.52%(210±3.7μg)的布洛芬,与其他药物递送方法相比,显示出更高的药物释放。这项研究为需要每日重复给药的关节炎患者提供了一种便携、安全且有效的治疗方法。

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