Institute for Application of Nuclear Energy-INEP, University of Belgrade, Belgrade-Zemun, Serbia.
Institute of Physics, University of Belgrade, Belgrade, Serbia.
J Biophotonics. 2021 Mar;14(3):e202000362. doi: 10.1002/jbio.202000362. Epub 2020 Dec 1.
Our previous study on rat skin showed that cumulative oxidative pressure induces profound structural and ultrastructural alterations in both rat skin epidermis and dermis during aging. Here, we aimed to investigate the biophotonic properties of collagen as a main dermal component in the function of chronological aging. We used second harmonic generation (SHG) and two-photon excited fluorescence (TPEF) on 5 μm thick skin paraffin sections from 15-day-, 1-month- and 21-month-old rats, respectively, to analyze collagen alterations, in comparison to conventional light and electron microscopy methods. Obtained results show that polarization-resolved SHG (PSHG) images can detect collagen fiber alterations in line with chronological aging and that this method is consistent with light and electron microscopy. Moreover, the β coefficient calculated from PSHG images points out that delicate alterations lead to a more ordered structure of collagen molecules due to oxidative damage. The results of this study also open the possibility of successfully applying this fast and label-free method to previously fixed samples.
我们之前的大鼠皮肤研究表明,在衰老过程中,累积的氧化压力会导致大鼠皮肤表皮和真皮的结构和超微结构发生深刻变化。在这里,我们旨在研究作为真皮主要成分的胶原蛋白的生物光子特性,以探究其在皮肤自然老化中的功能。我们使用二次谐波产生(SHG)和双光子激发荧光(TPEF)分别对 15 天、1 个月和 21 个月大的大鼠的 5μm 厚皮肤石蜡切片进行分析,以比较胶原蛋白的变化,并与传统的光镜和电镜方法进行比较。结果表明,偏振分辨 SHG(PSHG)图像可以检测到与自然老化相关的胶原蛋白纤维变化,并且这种方法与光镜和电镜一致。此外,从 PSHG 图像计算出的β系数表明,由于氧化损伤,细微的变化导致胶原蛋白分子的结构更加有序。这项研究的结果还为成功应用这种快速、无标记的方法于先前固定的样本开辟了可能性。