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Correlative nonlinear optical microscopy and infrared nanoscopy reveals collagen degradation in altered parchments

机译:相关的非线性光学显微镜和红外纳米显微镜显示羊皮改变后的胶原蛋白降解

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摘要

This paper presents the correlative imaging of collagen denaturation by nonlinear optical microscopy (NLO) and nanoscale infrared (IR) spectroscopy to obtain morphological and chemical information at different length scales. Such multiscale correlated measurements are applied to the investigation of ancient parchments, which are mainly composed of dermal fibrillar collagen. The main issue is to characterize gelatinization, the ultimate and irreversible alteration corresponding to collagen denaturation to gelatin, which may also occur in biological tissues. Key information about collagen and gelatin signatures is obtained in parchments and assessed by characterizing the denaturation of pure collagen reference samples. A new absorbing band is observed near the amide I band in the IR spectra, correlated to the onset of fluorescence signals in NLO images. Meanwhile, a strong decrease is observed in Second Harmonic signals, which are a structural probe of the fibrillar organization of the collagen at the micrometer scale. NLO microscopy therefore appears as a powerful tool to reveal collagen degradation in a non-invasive way. It should provide a relevant method to assess or monitor the condition of collagen-based materials in museum and archival collections and opens avenues for a broad range of applications regarding this widespread biological material.
机译:本文介绍了通过非线性光学显微镜(NLO)和纳米级红外(IR)光谱对胶原变性进行的相关成像,以获得不同长度尺度的形态和化学信息。这种多尺度相关测量被用于研究古代羊皮纸,这些羊皮纸主要由真皮原纤维胶原蛋白组成。主要问题是表征糊化,这是与胶原变性成明胶相对应的最终和不可逆的改变,这也可能发生在生物组织中。有关胶原蛋白和明胶签名的关键信息可从羊皮纸中获得,并通过表征纯胶原蛋白参考样品的变性来评估。在红外光谱中的酰胺I谱带附近观察到一个新的吸收谱带,与NLO图像中荧光信号的出现有关。同时,在第二谐波信号中观察到强烈的下降,该信号是在微米尺度上胶原的纤维组织的结构探针。因此,NLO显微镜似乎是以无创方式揭示胶原蛋白降解的强大工具。它应该提供一种评估或监测博物馆和档案馆藏中胶原基材料状况的相关方法,并为这种广泛的生物材料的广泛应用开辟道路。

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