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Hyperspectral characterization of fluorophore diffusion in human skin using a sCMOS based hyperspectral camera

机译:使用基于sCMOS的高光谱相机对人体皮肤中的荧光团扩散进行高光谱表征

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Hyperspectral fluorescence imaging is a modality combining high spatial and spectral resolution with increased sensitivity for low photon counts. The main objective of the current study was to investigate if this technique is a suitable tool for characterization of diffusion properties in human skin. This was done by imaging fluorescence from Alexa 488 in ex vivo human skin samples using an sCMOS based hyperspectral camera. Pre-treatment with acetone, DMSO and mechanical micro-needling of the stratum corneum created variation in epidermal permeability between the measured samples. Selected samples were also stained using fluorescence labelled biopolymers. The effect of fluorescence enhancers on transdermal diffusion could be documented from the collected data. Acetone was found to have an enhancing effect on the transport, and the results indicate that the biopolymers might have a similar effect, The enhancement from these compounds were not as prominent as the effect of mechanical penetration of the sample using a micro-needling device. Hyperspectral fluorescence imaging has thus been proven to be an interesting tool for characterization of fluorophore diffusion in ex vivo skin samples. Further work will include repetition of the measurements in a shorter time scale and mathematical modeling of the diffusion process to determine the diffusivity in skin for the compounds in question
机译:高光谱荧光成像是一种结合了高空间和光谱分辨率以及对低光子数的高灵敏度的模式。当前研究的主要目的是研究该技术是否适合表征人体皮肤的扩散特性。这是通过使用基于sCMOS的高光谱相机对离体人体皮肤样本中Alexa 488的荧光进行成像来完成的。用丙酮,DMSO和角质层的机械微针进行预处理会导致被测样品之间的表皮渗透性发生变化。所选样品也用荧光标记的生物聚合物染色。荧光增强剂对透皮扩散的作用可以从收集的数据中证明。发现丙酮对转运具有增强作用,结果表明生物聚合物可能具有类似的作用。这些化合物的增强作用不如使用微针装置机械穿透样品的作用那么明显。因此,高光谱荧光成像已被证明是表征离体皮肤样品中荧光团扩散的有趣工具。进一步的工作将包括在更短的时间范围内重复进行测量,并对扩散过程进行数学建模,以确定有关化合物在皮肤中的扩散率。

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