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用于经皮脂质体渗透的人体皮肤中空间分辨双色扩散测量。

Spatially resolved two-color diffusion measurements in human skin applied to transdermal liposome penetration.

机构信息

Membrane Biophysics and Biophotonics Group/MEMPHYS Center for Biomembrane Physics, Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense, Denmark.

出版信息

J Invest Dermatol. 2013 May;133(5):1260-8. doi: 10.1038/jid.2012.461. Epub 2012 Dec 6.

Abstract

A multiphoton excitation-based fluorescence fluctuation spectroscopy method, Raster image correlation spectroscopy (RICS), was used to measure the local diffusion coefficients of distinct model fluorescent substances in excised human skin. In combination with structural information obtained by multiphoton excitation fluorescence microscopy imaging, the acquired diffusion information was processed to construct spatially resolved diffusion maps at different depths of the stratum corneum (SC). Experiments using amphiphilic and hydrophilic fluorescently labeled molecules show that their diffusion in SC is very heterogeneous on a microscopic scale. This diffusion-based strategy was further exploited to investigate the integrity of liposomes during transdermal penetration. Specifically, the diffusion of dual-color fluorescently labeled liposomes--containing an amphiphilic fluorophore in the lipid bilayer and a hydrophilic fluorophore encapsulated in the liposome lumen--was measured using cross-correlation RICS. This type of experiment allows discrimination between separate (uncorrelated) and joint (correlated) diffusion of the two different fluorescent probes, giving information about liposome integrity. Independent of the liposome composition (phospholipids or transfersomes), our results show a clear lack of cross-correlation below the skin surface, indicating that the penetration of intact liposomes is highly compromised by the skin barrier.

摘要

一种基于多光子激发的荧光波动光谱方法,即光栅相关光谱学(RICS),被用于测量离体人皮肤上不同模型荧光物质的局部扩散系数。结合多光子激发荧光显微镜成像获得的结构信息,对所获得的扩散信息进行处理,以在角质层(SC)的不同深度构建空间分辨的扩散图。使用两亲性和亲水性荧光标记分子的实验表明,它们在 SC 中的扩散在微观尺度上非常不均匀。这种基于扩散的策略进一步被用于研究脂质体在经皮渗透过程中的完整性。具体来说,使用互相关 RICS 测量双色荧光标记脂质体(脂质双层中含有两亲性荧光团,脂质体腔中包封有亲水性荧光团)的扩散。这种类型的实验可以区分两个不同荧光探针的单独(不相关)和联合(相关)扩散,从而提供有关脂质体完整性的信息。与脂质体组成(磷脂或转胞体)无关,我们的结果表明在皮肤表面以下几乎没有互相关,这表明完整脂质体的穿透性受到皮肤屏障的严重损害。

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