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体内角质层水合作用的深度剖析:电导测量与共焦拉曼光谱测量的比较

Depth profiling of Stratum corneum hydration in vivo: a comparison between conductance and confocal Raman spectroscopic measurements.

作者信息

Boncheva Mila, de Sterke Johanna, Caspers Peter J, Puppels Gerwin J

机构信息

Corporate R&D Division, Firmenich SA, Geneva, Switzerland.

出版信息

Exp Dermatol. 2009 Oct;18(10):870-6. doi: 10.1111/j.1600-0625.2009.00868.x. Epub 2009 Mar 10.

Abstract

The high-frequency electrical conductance of tape-stripped human skin in vivo can be used to evaluate the hydration profile of Stratum corneum (SC). Tape-stripping provides access to the underlying SC layers, and the conductance of these layers (as measured by the Skicon instrument) correlates well with their water content, as demonstrated by independent confocal Raman spectroscopic measurements. The correlation shows high inter-individual variance and is not linear over the full measurement range of the instrument, but is helpful to discriminate between dry, normal and highly hydrated SC. The depth profile of hydration in tape-stripped SC corresponds to the one in intact SC only if the barrier function of the skin is not impaired. Thus, conductometry of tape-stripped skin must be used in conjunction with a method that allows to estimate the barrier damage inflicted to SC during the tape-stripping procedure, for example, measurement of the trans-epidermal water loss. The methodology described here is simple, rapid and minimally invasive, and it employs commercially available instrumentation that is cheap, portable and easy to use. This approach is applicable to in vivo estimation of the SC hydration in studies in the areas of dermatology, skin care and transdermal drug delivery.

摘要

体内胶带剥离的人体皮肤的高频电导可用于评估角质层(SC)的水合情况。胶带剥离可触及下面的SC层,并且这些层的电导(通过Skicon仪器测量)与其含水量密切相关,独立的共聚焦拉曼光谱测量已证明了这一点。这种相关性显示出较高的个体间差异,并且在仪器的整个测量范围内不是线性的,但有助于区分干燥、正常和高度水合的SC。仅当皮肤的屏障功能未受损时,胶带剥离的SC中的水合深度分布才与完整SC中的相对应。因此,胶带剥离皮肤的电导测量必须与一种能够估计胶带剥离过程中对SC造成的屏障损伤的方法结合使用,例如,测量经表皮水分流失。这里描述的方法简单、快速且微创,并且使用的是便宜、便携且易于使用的商用仪器。这种方法适用于皮肤病学、皮肤护理和透皮给药领域研究中SC水合的体内估计。

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