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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Time and depth resolved visualisation of the diffusion of a lipophilic dye into the hair follicle of fresh unfixed human scalp skin
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Time and depth resolved visualisation of the diffusion of a lipophilic dye into the hair follicle of fresh unfixed human scalp skin

机译:时间和深度解决了亲脂性染料扩散到未固定的人类头皮皮肤毛囊中的可视化问题

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摘要

Visualising the penetration pathway of a lipophilic model dye into the hair follicle of fresh unfixed human skin would facilitate optimisation of drug formulations for local delivery to the pilosebaccous unit. A block of fresh human scalp skin was mechanically fixed in a newly designed combination of cutting device/on-line diffusion cell, manual cross-sectioned perpendicular to the skin surface and sealed to create the donor and acceptor compartment. The donor phase consisted of a saturated solution of Bodipy(R) FL C-5 in a citric acid buffer solution. Images were obtained on-line by confocal laser scanning microscopy (CLSM) every 30 min for 16 h. For each time point and each skin region relative intensity values were calculated. The on-line visualisation showed a fast diffusion of the label into the gap of the hair follicle followed by a fluorescent staining in the gap itself The data strongly indicate that the fluorescence in the cuticle originates mainly from the dye of the gap and not from the surrounding epidermis. The on-line visualisation provides a new and excellent tool to monitor simultaneous changes in distribution profiles in the various skin layers including the hair follicle. This information can be used to determine penetration pathways in the skin. (C) 2004 Published by Elsevier BX.
机译:可视化亲脂性模型染料渗透到未固定的新鲜人皮肤的毛囊中的渗透途径,将有助于优化药物制剂,以局部递送至毛囊状单位。将一块新鲜的人头皮皮肤机械固定在新设计的切割装置/在线扩散池组合中,垂直于皮肤表面进行手动剖切并密封以创建供体和受体隔室。供体相由Bodipy FL C-5在柠檬酸缓冲溶液中的饱和溶液组成。每30分钟通过共聚焦激光扫描显微镜(CLSM)在线获取图像16小时。对于每个时间点和每个皮肤区域,计算相对强度值。在线可视化显示标记快速扩散到毛囊间隙中,然后间隙本身发生荧光染色。数据强烈表明角质层中的荧光主要来源于间隙中的染料,而不是来源于周围的表皮。在线可视化提供了一种新的出色工具,可以监视包括毛囊在内的各种皮肤层中分布曲线的同时变化。该信息可用于确定皮肤的渗透途径。 (C)2004由Elsevier BX发行。

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