Assisted Interpretation of Laser-Induced Fluorescence Spectra of Egg-Based Binding Media Using Total Emission Fluorescence Spectroscopy

Laser Chemistry Pub Date : 2006-12-28 DOI:10.1155/2006/82823
Austin Nevin, D. Anglos
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引用次数: 21

Abstract

Laser-induced fluorescence (LIF) spectroscopy can provide nondestructive, qualitative analysis of protein-based binding media found in artworks. Fluorescence emissions from proteins in egg yolk and egg white are due to autofluorescent aromatic amino acids as well as other native and age-related fluorophores, but the potential of fluorescence spectroscopy for the differentiation between binding media is dependent on the choice of a suitable excitation wavelength and limited by problems in interpretation. However, a better understanding of emission spectra associated with LIF can be achieved following comparisons with total emission fluorescence spectra where a series of consecutive emission spectra are recorded over a specific range. Results using nanosecond UV laser sources for LIF of egg-based binding media are presented which are rationalised following comparisons with total emission spectra. Specifically, fluorescence is assigned to tryptophan and oxidation products of amino acids; in the case of egg yolk, fatty-acid polymerisation and age-related degradation products account for the formation of fluorophores.
全发射荧光光谱法辅助解释蛋基结合介质激光诱导荧光光谱
激光诱导荧光(LIF)光谱可以对艺术品中发现的基于蛋白质的结合介质进行无损的定性分析。蛋黄和蛋清中蛋白质的荧光发射是由于自身荧光的芳香氨基酸以及其他天然和年龄相关的荧光团,但荧光光谱区分结合介质的潜力取决于合适的激发波长的选择,并受到解释问题的限制。然而,在与总发射荧光光谱进行比较后,可以更好地了解与LIF相关的发射光谱,其中在特定范围内记录了一系列连续的发射光谱。通过与总发射光谱的比较,给出了用纳秒级紫外激光源对蛋基结合介质进行LIF的结果。具体来说,荧光被分配到色氨酸和氨基酸的氧化产物;就蛋黄而言,脂肪酸聚合和与年龄有关的降解产物是荧光团形成的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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