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Characterization of porcine skin as a model for human skin studies using infrared spectroscopic imaging

机译:使用红外光谱成像表征猪皮肤作为人类皮肤研究的模型

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摘要

Porcine skin is often considered a substitute for human skin based on morphological and functional data, for example, for transdermal drug diffusion studies. A chemical, structural and temporal characterization of porcine skin in comparison to human skin is not available but will likely improve our understanding of this porcine skin model. Here, we employ Fourier transform infrared (FT-IR) spectroscopic imaging to holistically measure chemical species as well as spatial structure as a function of time to characterize porcine skin as a model for human skin. Porcine skin was found to resemble human skin spectroscopically and differences are elucidated. Cryo-prepared fresh porcine skin samples for spectroscopic imaging were found to be stable over time and small variations are observed. Hence, we extended characterization to the use of this model for dynamic processes. In particular, the capacity and stability of this model in transdermal diffusion is examined. The results indicate that porcine skin is likely to be an attractive tool for studying diffusion dynamics of materials in human skin.
机译:基于形态和功能数据,例如经皮药物扩散研究,猪皮肤通常被认为是人类皮肤的替代品。无法获得与人皮肤相比的猪皮肤的化学,结构和时间特征,但可能会增进我们对这种猪皮肤模型的理解。在这里,我们采用傅立叶变换红外(FT-IR)光谱成像技术来整体测量化学物种以及空间结构随时间的变化,以表征猪皮肤作为人类皮肤的模型。发现猪皮肤在光谱上类似于人的皮肤,并且阐明了差异。发现冷冻制备的用于光谱成像的新鲜猪皮肤样品随时间稳定并且观察到很小的变化。因此,我们将表征扩展到该模型在动态过程中的使用。特别地,检查了该模型在透皮扩散中的能力和稳定性。结果表明,猪皮可能是研究人体皮肤中物质扩散动力学的一种有吸引力的工具。

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