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Two-photon autofluorescence lifetime imaging of human skin papillary dermis in vivo: assessment of blood capillaries and structural proteins localization

机译:人体皮肤乳头状真皮的两光子自发荧光寿命成像:血液毛细血管和结构蛋白定位的评估

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摘要

The papillary dermis of human skin is responsible for its biomechanical properties and for supply of epidermis with chemicals. Dermis is mainly composed of structural protein molecules, including collagen and elastin, and contains blood capillaries. Connective tissue diseases, as well as cardiovascular complications have manifestations on the molecular level in the papillary dermis (e.g. alteration of collagen I and III content) and in the capillary structure. In this paper we assessed the molecular structure of internal and external regions of skin capillaries using two-photon fluorescence lifetime imaging (FLIM) of endogenous compounds. It was shown that the capillaries are characterized by a fast fluorescence decay, which is originated from red blood cells and blood plasma. Using the second harmonic generation signal, FLIM segmentation was performed, which provided for spatial localization and fluorescence decay parameters distribution of collagen I and elastin in the dermal papillae. It was demonstrated that the lifetime distribution was different for the inner area of dermal papillae around the capillary loop that was suggested to be due to collagen III. Hence, we propose a generalized approach to two-photon imaging of the papillary dermis components, which extends the capabilities of this technique in skin diagnosis.
机译:人皮肤的乳头状真皮负责其生物力学特性并为表皮供应化学物质。真皮主要由包括胶原蛋白和弹性蛋白的结构蛋白分子组成,并含有毛细血管。结缔组织疾病以及心血管并发症在乳头状真皮的分子水平(例如,胶原I和III含量的变化)和毛细血管结构中都有表现。在本文中,我们使用内源性化合物的双光子荧光寿命成像(FLIM)评估了皮肤毛细血管内部和外部区域的分子结构。结果表明,毛细血管的特征是快速的荧光衰减,其起源于红细胞和血浆。使用二次谐波产生信号,进行了FLIM分割,从而为真皮乳头中的胶原I和弹性蛋白提供了空间定位和荧光衰减参数分布。结果表明,对于毛细血管loop周围的真皮乳头内部区域,其寿命分布是不同的,这被认为是由于胶原蛋白III引起的。因此,我们提出了一种对乳头状真皮成分进行双光子成像的通用方法,从而扩展了该技术在皮肤诊断中的功能。

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