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Dispersive Raman spectroscopy allows the identification and quantification of melanin types

机译:分散拉曼光谱法可鉴定和定量黑色素类型

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AbstractMelanins are the most prevalent pigments in animals and are involved in visual communication by producing colored traits that often evolve as intraspecific signals of quality. Identifying and quantifying melanins are therefore essential to understand the function and evolution of melanin-based signals. However, the analysis of melanins is difficult due to their insolubility and the lack of simple methods that allow the identification of their chemical forms. We recently proposed the use of Raman spectroscopy as a simple, noninvasive technique that can be used to identify and quantify melanins in feathers and hairs. Contrarily, other authors later stated that melanins are characterized by a lack of defined Raman signals. Here, we use confocal Raman microscopy to confirm previous analyses showing that the two main chemical forms of melanins (eumelanin and pheomelanin) exhibit distinct Raman signal and compare different excitation wavelengths to analyze synthetic pheomelanin and natural melanins in feathers of different species of birds. Our analyses indicate that only laser excitation wavelengths below 1064 nm are useful for the analysis of melanins by Raman spectroscopy, and only 780-nm laser in the case of melanins in feathers. These findings show that the capacity of Raman spectroscopy to distinguish different chemical forms of melanins depends on laser power and integration time. As a consequence, Raman spectroscopy should be applied after preliminar analyses using a range of these parameters, especially in fragile biological tissues such as feathers.
机译:摘要黑色素是动物中最普遍的色素,它通过产生彩色特征而参与视觉交流,这些彩色特征通常会作为种内质量信号而演变。因此,鉴定和定量黑色素对于理解基于黑色素的信号的功能和进化至关重要。但是,由于黑色素的不溶性以及缺乏能够鉴定其化学形式的简单方法,因此黑色素的分析非常困难。我们最近提出将拉曼光谱法用作一种简单的,非侵入性的技术,可用于鉴定和定量羽毛和头发中的黑色素。相反,其他作者后来指出,黑色素的特征是缺乏明确的拉曼信号。在这里,我们使用共聚焦拉曼显微镜来确认先前的分析,结果表明黑色素的两种主要化学形式(全黑色素和苯丙氨酸)表现出不同的拉曼信号,并比较了不同的激发波长来分析不同鸟类鸟类羽毛中的合成苯丙氨酸和天然黑色素。我们的分析表明,仅1064 nm以下的激光激发波长可用于通过拉曼光谱分析黑色素,而对于羽毛中的黑色素仅可使用780 nm激光。这些发现表明,拉曼光谱法区分黑色素的不同化学形式的能力取决于激光功率和积分时间。因此,在初步分析之后,应使用一系列这些参数应用拉曼光谱,尤其是在脆弱的生物组织(例如羽毛)中。

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