National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.
Institute of Analytical Chemistry, Faculty of Chemistry, University of Vienna, Waehringer Strasse 38, 1090 Vienna, Austria.
Anal Chem. 2023 May 16;95(19):7804-7812. doi: 10.1021/acs.analchem.3c01439. Epub 2023 Apr 25.
Laser ablation (LA) in combination with inductively coupled plasma time-of-flight mass spectrometry (ICP-TOFMS) enables monitoring of elements from the entire mass range for every pixel, regardless of the isotopes of interest for a certain application. This provides nontargeted multi-element (bio-)imaging capabilities and the unique possibility to screen for elements that were initially not expected in the sample. Quantification of a large range of elements is limited as the preparation of highly multiplexed calibration standards for bioimaging applications by LA-ICP-(TOF)MS is challenging. In this study, we have developed a workflow for semiquantitative analysis by LA-ICP-TOFMS based on multi-element gelatin micro-droplet standards. The presented approach is intended for the mapping of biological samples due to the requirement of matrix-matched standards for accurate quantification in LA-ICPMS, a prerequisite that is given by the use of gelatin-based standards. A library of response factors was constructed based on 72 elements for the semiquantitative calculations. The presented method was evaluated in two stages: (i) on gelatin samples with known elemental concentrations and (ii) on real-world samples that included prime examples of bioimaging (mouse spleen and tumor tissue). The developed semiquantification approach was based on 10 elements as calibration standards and provided the determination of 136 nuclides of 63 elements, with errors below 25%, and for half of the nuclides, below 10%. A web application for quantification and semiquantification of LA-ICP(-TOF)MS data was developed, and a detailed description is presented to easily allow others to use the presented method.
激光烧蚀 (LA) 与电感耦合等离子体质谱飞行时间 (ICP-TOFMS) 相结合,使我们能够对每个像素的整个质量范围内的元素进行监测,而无需考虑特定应用中感兴趣的同位素。这提供了非靶向多元素(生物)成像功能,以及筛选最初未预期在样品中存在的元素的独特可能性。由于通过 LA-ICP-(TOF)MS 为生物成像应用制备高度多重校准标准具有挑战性,因此对大范围元素的定量受到限制。在这项研究中,我们开发了一种基于多元素明胶微滴标准的 LA-ICP-TOFMS 半定量分析工作流程。由于 LA-ICPMS 中需要基质匹配标准进行准确定量,这是使用基于明胶的标准所必需的,因此本方法旨在用于生物样品的映射。基于 72 种元素构建了响应因子库,用于半定量计算。提出的方法分两个阶段进行评估:(i)在具有已知元素浓度的明胶样品上,(ii)在包括生物成像的真实示例(小鼠脾脏和肿瘤组织)的实际样品上。开发的半定量方法基于 10 种元素作为校准标准,并提供了 63 种元素的 136 种核素的测定,误差低于 25%,对于一半的核素,误差低于 10%。开发了一个用于 LA-ICP(-TOF)MS 数据定量和半定量的网络应用程序,并提供了详细描述,以便其他人轻松使用所提出的方法。