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Spatially resolved chemical analysis of cicada wings using laser-ablation electrospray ionization (LAESI) imaging mass spectrometry (IMS)

机译:使用激光消融电喷雾电离(LaESI)成像质谱(IMS)的空间上解决了蝉翼的化学分析

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Laser-ablation electrospray ionization (LAESI) imaging mass spectrometry (IMS) is an emerging bioanalytical tool for direct imaging and analysis of biological tissues. Performing ionization in an ambient environment, this technique requires little sample preparation and no additional matrix, and can be performed on natural, uneven surfaces. When combined with optical microscopy, the investigation of biological samples by LAESI allows for spatially resolved compositional analysis. We demonstrate here the applicability of LAESI-IMS for the chemical analysis of thin, desiccated biological samples, specifically Neotibicen pruinosus cicada wings. Positive-ion LAESI-IMS accurate ion-map data was acquired from several wing cells and superimposed onto optical images allowing for compositional comparisons across areas of the wing. Various putative chemical identifications were made indicating the presence of hydrocarbons, lipids/esters, amines/amides, and sulfonated/phosphorylated compounds. With the spatial resolution capability, surprising chemical distribution patterns were observed across the cicada wing, which may assist in correlating trends in surface properties with chemical distribution. Observed ions were either (1) equally dispersed across the wing, (2) more concentrated closer to the body of the insect (proximal end), or (3) more concentrated toward the tip of the wing (distal end). These findings demonstrate LAESI-IMS as a tool for the acquisition of spatially resolved chemical information from fragile, dried insect wings. This LAESI-IMS technique has important implications for the study of functional biomaterials, where understanding the correlation between chemical composition, physical structure, and biological function is critical.
机译:激光消融电喷雾电离(LaESI)成像质谱(IMS)是一种新兴生物分析工具,用于直接成像和分析生物组织。在环境环境中进行电离,该技术需要很少的样品制备和没有额外的基质,并且可以在天然,不均匀的表面上进行。结合光学显微镜时,Laesi对生物样品的研究允许空间分辨的组成分析。我们展示了Laesi-IMS对薄,干燥的生物样品的化学分析的适用性,特别是Neotibicen Pruinosus Cicada翅膀。正离子LaESI-IMS精确离子图数据是从多个翼电池获取的,并叠加在允许翼区域的组成比较的光学图像上。制备各种推定的化学鉴定,表明存在烃,脂质/酯,胺/酰胺和磺化/磷酸化化合物。随着空间分辨率的能力,在蝉翼中观察到令人惊讶的化学分布图案,这可能有助于将表面性质的趋势与化学分布相关。观察到的离子是(1)等于穿过机翼,(2)更浓缩到昆虫(近端)的主体,或(3)更浓缩朝向机翼尖端(远端)。这些调查结果表明了Laesi-IMS作为从脆弱的干燥昆虫翅膀获取空间分辨的化学信息的工具。该Laesi-IMS技术对功能生物材料的研究具有重要意义,在那里了解化学成分,物理结构和生物功能之间的相关性至关重要。

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