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Elemental Bioimaging by Means of Fast Scanning Laser Ablation-Inductively Coupled Plasma-Mass Spectrometry

机译:通过快速扫描激光烧蚀-电感耦合等离子体质谱法进行元素生物成像

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摘要

One of the most common setups for elemental bioimaging, the hyphenation of a laser ablation (LA) system and an inductively coupled plasma mass spectrometer (ICP-MS), was expanded by adding full scan mass spectrometric information as another dimension of information. While most studies deal with the analysis of typically not more than up to 10 isotopes per scan cycle, a fast scanning quadrupole mass analyzer was utilized to record the full mass spectrum of interest in this work. Mass-to-charge ratios from 6 to 250 were observed within one cycle. Besides the x- and y-position on the ablated sample and the intensity, the m/z-ratio served as fourth variable for each pixel of the obtained data, closing thereby the gap between "inorganic" and "organic" mass spectrometric imaging techniques. The benefits of this approach include an improved control of interferences, the discovery of unexpected elemental distributions, the possibility to plot isotopic ratios, and to integrate the intensities of a certain number of mass channels recorded for each isotope, thus virtually increasing sensitivity. The respective data are presented for dried droplets as well as embedded animal and human tissue slices. Limits of detection were calculated and found to be in accordance with counting statistics. A dedicated software macro was developed for data manipulation prior to common evaluation and image creation.
机译:通过添加全扫描质谱信息作为信息的另一个维度,扩大了元素生物成像的最常见设置之一,即激光烧蚀(LA)系统的连字和电感耦合等离子体质谱仪(ICP-MS)。尽管大多数研究通常每个扫描周期分析不超过10个同位素,但使用快速扫描四极杆质量分析仪记录了这项工作中感兴趣的全部质谱。在一个周期内观察到质荷比为6至250。除了烧蚀样品上的x和y位置以及强度外,m / z比率还用作获得数据的每个像素的第四变量,从而弥合了“无机”和“有机”质谱成像技术之间的差距。这种方法的好处包括改善了对干扰的控制,发现了意外的元素分布,绘制了同位素比值以及整合了为每个同位素记录的一定数量的质量通道的强度的可能性,从而实际上提高了灵敏度。给出了干燥液滴以及包埋的动物和人类组织切片的相应数据。计算出检出限,发现其与计数统计一致。在通用评估和图像创建之前,开发了专用的软件宏来进行数据处理。

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