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利用光相干断层扫描对微针皮肤穿透进行体内动态特征描述。

In-vivo dynamic characterization of microneedle skin penetration using optical coherence tomography.

机构信息

University of Limerick, Department of Physics, Tissue Optics and Microcirculation Imaging Facility, National Biophotonics and Imaging Platform, Limerick, Ireland.

出版信息

J Biomed Opt. 2010 Jul-Aug;15(4):046001. doi: 10.1117/1.3463002.

Abstract

The use of microneedles as a method of circumventing the barrier properties of the stratum corneum is receiving much attention. Although skin disruption technologies and subsequent transdermal diffusion rates are being extensively studied, no accurate data on depth and closure kinetics of microneedle-induced skin pores are available, primarily due to the cumbersome techniques currently required for skin analysis. We report on the first use of optical coherence tomography technology to image microneedle penetration in real time and in vivo. We show that optical coherence tomography (OCT) can be used to painlessly measure stratum corneum and epidermis thickness, as well as microneedle penetration depth after microneedle insertion. Since OCT is a real-time, in-vivo, nondestructive technique, we also analyze skin healing characteristics and present quantitative data on micropore closure rate. Two locations (the volar forearm and dorsal aspect of the fingertip) have been assessed as suitable candidates for microneedle administration. The results illustrate the applicability of OCT analysis as a tool for microneedle-related skin characterization.

摘要

微针作为一种绕过角质层屏障特性的方法受到了广泛关注。尽管正在广泛研究皮肤破坏技术和随后的经皮扩散率,但由于目前对皮肤分析所需的繁琐技术,尚无法获得有关微针诱导的皮肤孔深度和闭合动力学的准确数据。我们首次报告了使用光学相干断层扫描技术实时和体内成像微针穿透的情况。我们表明,光学相干断层扫描(OCT)可用于无痛测量角质层和表皮厚度,以及微针插入后的微针穿透深度。由于 OCT 是一种实时、体内、非破坏性技术,我们还分析了皮肤愈合特性,并提供了有关微孔闭合率的定量数据。已经评估了两个位置(手掌和指尖的背面)作为微针给药的合适候选位置。结果说明了 OCT 分析作为一种与微针相关的皮肤特征化工具的适用性。

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