首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Non-invasive imaging of skin physiology and percutaneous penetration using fluorescence spectral and lifetime imaging with multiphoton and confocal microscopy.
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Non-invasive imaging of skin physiology and percutaneous penetration using fluorescence spectral and lifetime imaging with multiphoton and confocal microscopy.

机译:使用荧光光谱对皮肤生理学和经皮渗透进行无创成像,并通过多光子和共聚焦显微镜进行终生成像。

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摘要

New multiphoton and confocal microscope technologies and fluorescence lifetime imaging techniques are now being used to non-invasively image, in space (three dimensions),in time, in spectra, in lifetime and in fluorescence anisotropy (total of 7 dimensions), fluorescent molecules in in situ and in vivo biological tissue, including skin. The process involves scanning a 2D area and measuring fluorescence at a given tissue depth below the surface after excitation by a laser beam with a wavelength within the one-photon or two-photon absorption band of the fluorophores followed by the stacking together of a series of 2D images from different depths to reconstruct the full spatial structure of the sample. Our aim in this work is to describe the principles, opportunities, limitations and applications of this new technology and its application in defining skin morphology, disease and skin penetration in vitro and in vivo by drugs, chemicals and nanoparticles. A key emphasis is in the use of fluorescence lifetime imaging to add additional specificity and quantitation to the detection of the various exogenous chemicals and nanoparticles that may be applied to the skin as well as endogenous fluorescent species in the skin. Examples given include equipment configuration; components in skin autofluorescence in various skin strata; imaging and quantification of coexisting drugs and their metabolites; skin pH; nanoparticle zinc oxide skin penetration; liposome delivery of drugs to deeper tissues; and observations in skin ageing and in various skin diseases.
机译:现在,新的多光子和共聚焦显微镜技术以及荧光寿命成像技术正用于在空间(三个维度),时间,光谱,寿命和荧光各向异性(总共7个维度)中对荧光分子进行无创成像。原位和体内生物组织,包括皮肤。该过程涉及扫描二维区域,并在波长为荧光团的一个光子或两个光子吸收带内的激光束激发后,在表面以下的给定组织深度处测量荧光,然后将一系列来自不同深度的2D图像可重构样本的完整空间结构。我们在这项工作中的目的是描述这项新技术的原理,机会,局限性和应用,以及它在定义药物,化学药品和纳米粒子在体内和体外的皮肤形态,疾病和皮肤渗透方面的应用。重点在于荧光寿命成像的使用,以增加对检测各种可能应用于皮肤的外源性化学物质和纳米颗粒以及皮肤中的内源性荧光物质的特异性和定量。给出的例子包括设备配置;各种皮肤层中皮肤自发荧光的成分;并存药物及其代谢物的成像和定量;皮肤酸碱度纳米氧化锌皮肤渗透脂质体将药物输送到更深的组织;以及皮肤老化和各种皮肤疾病的观察。

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