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基于微针的药物递送:递送参数及生物相容性研究

Microneedle-based drug delivery: studies on delivery parameters and biocompatibility.

作者信息

Wu Yan, Qiu Yuqin, Zhang Suohui, Qin Guangjiong, Gao Yunhua

机构信息

Laboratory of Organic Optoelectronic Functional Materials and Molecular Engineering, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100080, People's Republic of China.

出版信息

Biomed Microdevices. 2008 Oct;10(5):601-10. doi: 10.1007/s10544-008-9171-x.

Abstract

There is a significant interest in the application of microneedles in intradermal drug delivery systems. Previous studies have demonstrated that skin permeation of drugs can be increased by orders of magnitude with microneedle insertion. In this study, emphasis is placed on the development of low cost, painless intradermal microneedle systems that can enhance the percutaneous drug permeation. Microneedles of octagonal pyramidal shape with the length of 150 mum were employed, and the capabilities of skin permeation enhancement under different delivery conditions were examined. The delivery parameters taken into account included the insertion time and the area of insertion. It was found that when solid microneedle arrays of 150 mum in length were pierced into human dermatomed skin for 5 to 60 s, microconduits with the depth of 50 to 80 mum were created to facilitate the percutaneous permeation of drugs. In percutaneous tests, it was demonstrated that the permeability coefficient of calcein (MW = 622.55) was significantly increased by 10(4) to 10(5) times compared to that on intact skin. In terms of biocompatibility, biological evaluation indicated a broad spectrum of safety for the microneedle system. These results suggest that the octagonal pyramidal microneedles can be an effective tool in developing novel intradermal drug delivery system.

摘要

微针在皮内给药系统中的应用引起了广泛关注。先前的研究表明,通过插入微针,药物的皮肤渗透可提高几个数量级。在本研究中,重点在于开发能够增强经皮药物渗透的低成本、无痛皮内微针系统。采用了长度为150μm的八棱锥形状微针,并研究了不同给药条件下的皮肤渗透增强能力。考虑的给药参数包括插入时间和插入面积。结果发现,当将长度为150μm的固体微针阵列刺入人离体皮肤5至60秒时,会形成深度为50至80μm的微通道,以促进药物的经皮渗透。在经皮试验中,结果表明,与完整皮肤相比,钙黄绿素(分子量 = 622.55)的渗透系数显著提高了10^4至10^5倍。在生物相容性方面,生物学评估表明微针系统具有广泛的安全性。这些结果表明,八棱锥微针可成为开发新型皮内给药系统的有效工具。

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