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皮肤的体内共焦拉曼显微光谱学:分子浓度分布的无创测定

In vivo confocal Raman microspectroscopy of the skin: noninvasive determination of molecular concentration profiles.

作者信息

Caspers P J, Lucassen G W, Carter E A, Bruining H A, Puppels G J

机构信息

Laboratory for Intensive Care Research and Optical Spectroscopy, Department of General Surgery, Faculty of Medicine and Health Sciences, Erasmus University Rotterdam and University Hospital Rotterdam, The Netherlands.

出版信息

J Invest Dermatol. 2001 Mar;116(3):434-42. doi: 10.1046/j.1523-1747.2001.01258.x.

Abstract

Confocal Raman spectroscopy is introduced as a noninvasive in vivo optical method to measure molecular concentration profiles in the skin. It is shown how it can be applied to determine the water concentration in the stratum corneum as a function of distance to the skin surface, with a depth resolution of 5 microm. The resulting in vivo concentration profiles are in qualitative and quantitative agreement with published data, obtained by in vitro X-ray microanalysis of skin samples. Semi-quantitative concentration profiles were determined for the major constituents of natural moisturizing factor (serine, glycine, pyrrolidone-5-carboxylic acid, arginine, ornithine, citrulline, alanine, histidine, urocanic acid) and for the sweat constituents lactate and urea. A detailed description is given of the signal analysis methodology that enables the extraction of this information from the skin Raman spectra. No other noninvasive in vivo method exists that enables an analysis of skin molecular composition as a function of distance to the skin surface with similar detail and spatial resolution. Therefore, it may be expected that in vivo confocal Raman spectroscopy will find many applications in basic and applied dermatologic research.

摘要

共焦拉曼光谱法作为一种用于测量皮肤中分子浓度分布的非侵入性体内光学方法被引入。展示了如何将其用于确定角质层中的水浓度与皮肤表面距离的函数关系,深度分辨率为5微米。所得的体内浓度分布在定性和定量上与通过皮肤样本的体外X射线微分析获得的已发表数据一致。测定了天然保湿因子的主要成分(丝氨酸、甘氨酸、吡咯烷酮-5-羧酸、精氨酸、鸟氨酸、瓜氨酸、丙氨酸、组氨酸、尿刊酸)以及汗液成分乳酸和尿素的半定量浓度分布。详细描述了能够从皮肤拉曼光谱中提取此信息的信号分析方法。不存在其他能够以类似的详细程度和空间分辨率分析皮肤分子组成与皮肤表面距离函数关系的非侵入性体内方法。因此,可以预期体内共焦拉曼光谱法将在基础和应用皮肤病学研究中找到许多应用。

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