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Investigation of the effect of hydration on dermal collagen in ex vivo human skin tissue using Second Harmonic Generation Microscopy

机译:使用二次谐波显微镜研究水合对离体人体皮肤组织中真皮胶原蛋白的影响

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摘要

Effect of hydration on the dermal collagen structure in human skin was investigated using second harmonic generation microscopy. Dog ears from the Mohs micrographic surgery department were procured for the study. Skin samples with subject aged between 58-90 years old were used in the study. Three dimensional Multiphoton (Two-photon and backward SHG) control data was acquired from the skin samples. After the control measurement, the skin tissue was either soaked in deionized water for 2 hours (Hydration) or kept at room temperature for 2 hours (Desiccation), and SHG data was acquired. The data was normalized for changes in laser power and detector gain. The collagen signal per unit volume from the dermis was calculated. The desiccated skin tissue gave higher backward SHG compared to respective control tissue, while hydration sample gave a lower backward SHG. The collagen signal decreased with increase in hydration of the dermal collagen. Hydration affected the packing of the collagen fibrils causing a change in the backward SHG signal. In this study, the use of multiphoton microscopy to study the effect of hydration on dermal structure was demonstrated in ex vivo tissue.
机译:使用二次谐波显微镜研究了水合作用对人皮肤中真皮胶原蛋白结构的影响。该研究从莫氏显微外科部门购得。研究中使用年龄在58-90岁之间的皮肤样本。从皮肤样品中获取三维多光子(两光子和后向SHG)对照数据。对照测量后,将皮肤组织在去离子水中浸泡2小时(水合)或在室温下保持2小时(干燥),并获取SHG数据。针对激光功率和检测器增益的变化对数据进行归一化。计算来自真皮的每单位体积的胶原蛋白信号。与相应的对照组织相比,干燥的皮肤组织具有较高的后向SHG,而水合样品的皮肤具有较低的后向SHG。胶原蛋白信号随着皮肤胶原蛋白水合程度的增加而降低。水合影响胶原蛋白原纤维的堆积,导致向后SHG信号发生变化。在这项研究中,在离体组织中证明了使用多光子显微镜研究水合对真皮结构的影响。

著录项

  • 来源
    《Photonic therapeutics and diagnostics XII》|2016年|96890W.1-96890W.10|共10页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Biomedical Engineering, Oregon Health Science University, Portland, OR 97229;

    University of Toronto, Toronto, ON, Canada;

    Dermatology/Biomedical Engineering, Oregon Health Science University, 3303 SW Bond St., Portland, OR, 97239, USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 13:45:07

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