Miniaturisation pourla Synthèse, l'Analyse &la Protéomique (MSAP), USR CNRS 3290, Université de Lille 1 Sciences et Technologies, 59655 Villeneuve d'Ascq, France.
Department of Molecular Sciences and Nanosystems, Ca' Foscari University, Venice, Italy.
Sci Rep. 2017 Apr 20;7:44538. doi: 10.1038/srep44538.
We describe an integrated and straightforward new analytical protocol that identifies plant gums from various sample sources including cultural heritage. Our approach is based on the identification of saccharidic fingerprints using mass spectrometry following controlled enzymatic hydrolysis. We developed an enzyme cocktail suitable for plant gums of unknown composition. Distinctive MS profiles of gums such as arabic, cherry and locust-bean gums were successfully identified. A wide range of oligosaccharidic combinations of pentose, hexose, deoxyhexose and hexuronic acid were accurately identified in gum arabic whereas cherry and locust bean gums showed respectively PentHex and Hex profiles. Optimized for low sample quantities, the analytical protocol was successfully applied to contemporary and historic samples including 'Colour Box Charles Roberson &Co' dating 1870s and drawings from the American painter Arthur Dove (1880-1946). This is the first time that a gum is accurately identified in a cultural heritage sample using structural information. Furthermore, this methodology is applicable to other domains (food, cosmetic, pharmaceutical, biomedical).
我们描述了一种集成和直接的新分析方案,可从包括文化遗产在内的各种来源的样本中识别植物胶。我们的方法基于使用质谱法在受控酶水解后识别糖指纹。我们开发了一种适用于未知成分植物胶的酶混合物。成功鉴定了阿拉伯胶、樱桃胶和角豆胶等胶的独特 MS 图谱。在阿拉伯胶中准确鉴定了戊糖、己糖、脱氧己糖和己糖醛酸的各种低聚糖组合,而樱桃胶和角豆胶则分别显示 PentHex 和 Hex 图谱。该分析方案针对低样品量进行了优化,成功应用于当代和历史样本,包括可追溯至 19 世纪 70 年代的“Charles Roberson & Co 彩色盒子”和美国画家亚瑟·多夫(1880-1946 年)的画作。这是首次使用结构信息在文化遗产样本中准确识别胶。此外,该方法适用于其他领域(食品、化妆品、制药、生物医学)。