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Polarization-resolved second-harmonic-generation imaging of dermal collagen fiber in prewrinkled and wrinkled skins of ultraviolet-B-exposed mouse

机译:暴露于紫外线B的小鼠的预皱纹和皱纹皮肤中的胶原蛋白纤维的偏振分辨二次谐波成像

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摘要

Skin wrinkling is a typical symptom of cutaneous photoaging; however, the skin wrinkling depends on not only the actual age but also exposure history to ultraviolet B (UVB) rays in individuals. Therefore, there is considerable need for its assessment technique in skin cosmetics and antiaging dermatology. Wrinkles always appear as linear grooves in the skin, and dermal collagen fibers play an important role to determine the morphology and mechanical properties of the skin. Therefore, an optical probe sensitive to dermal collagen fiber and its orientation will be useful. Polarization-resolved second-harmonic-generation (SHG) microscopy is a promising approach for evaluation of collagen fiber orientation because the efficiency of SHG light is sensitive to collagen fiber orientation when the incident light is linearly polarized. We investigate orientation change of dermal collagen fiber in prewrinkled and wrinkled skins of the UVB-exposed mouse model using polarization-resolved SHG microscopy. A polarization anisotropic image of the SHG light indicates that the change of collagen fiber orientation starts in the prewrinkled skin of UVB-exposed mice, then the wrinkle appears. Furthermore, the dominant direction of collagen fiber orientation in the prewrinkled skin is significantly parallel to the wrinkle direction in the wrinkled skin. This result implies that the change of collagen fiber orientation is a trigger of wrinkling in cutaneous photoaging.
机译:皮肤起皱是皮肤光老化的典型症状。然而,皮肤皱纹不仅取决于实际年龄,还取决于个人暴露于紫外线B(UVB)射线的历史。因此,在皮肤化妆品和抗衰老皮肤病学中非常需要其评估技术。皱纹总是表现为皮肤上的线性凹槽,而真皮胶原蛋白纤维在决定皮肤的形态和机械性能方面起着重要的作用。因此,对真皮胶原纤维及其取向敏感的光学探针将是有用的。偏振分辨第二谐波产生(SHG)显微镜是一种有前途的评估胶原纤维取向的方法,因为当入射光呈线性偏振态时,SHG光的效率对胶原纤维取向敏感。我们使用偏振分辨SHG显微镜研究了UVB暴露的小鼠模型的预皱纹和皱纹皮肤中真皮胶原纤维的取向变化。 SHG光的偏振各向异性图像表明,胶原纤维取向的变化始于UVB暴露小鼠的预皱皮,然后出现皱纹。此外,预皱皮中胶原纤维取向的主要方向与皱皮中的皱纹方向显着平行。该结果暗示胶原纤维取向的改变是皮肤光老化中起皱的触发。

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