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基于液滴的微滴校准用于 LA-ICPMS 的定量元素生物成像。

Micro-droplet-based calibration for quantitative elemental bioimaging by LA-ICPMS.

机构信息

Institute of Analytical Chemistry, Faculty of Chemistry, University of Vienna, Waehringer Strasse 38, 1090, Vienna, Austria.

Institute of Inorganic Chemistry, Faculty of Chemistry, University of Vienna, Waehringer Strasse 42, 1090, Vienna, Austria.

出版信息

Anal Bioanal Chem. 2022 Jan;414(1):485-495. doi: 10.1007/s00216-021-03357-w. Epub 2021 May 5.

Abstract

In this work, a novel standardization strategy for quantitative elemental bioimaging is evaluated. More specifically, multi-element quantification by laser ablation-inductively coupled plasma-time-of-flight mass spectrometry (LA-ICP-TOFMS) is performed by multi-point calibration using gelatin-based micro-droplet standards and validated using in-house produced reference materials. Fully automated deposition of micro-droplets by micro-spotting ensured precise standard volumes of 400 ± 5 pL resulting in droplet sizes of around 200 μm in diameter. The small dimensions of the micro-droplet standards and the use of a low-dispersion laser ablation setup reduced the analysis time required for calibration by LA-ICPMS significantly. Therefore, as a key advance, high-throughput analysis (pixel acquisition rates of more than 200 Hz) enabled to establish imaging measurement sequences with quality control- and standardization samples comparable to solution-based quantification exercises by ICP-MS. Analytical figures of merit such as limit of detection, precision, and accuracy of the calibration approach were assessed for platinum and for elements with biological key functions from the lower mass range (phosphorus, copper, and zinc). As a proof-of-concept application, the tool-set was employed to investigate the accumulation of metal-based anticancer drugs in multicellular tumor spheroid models at clinically relevant concentrations. Graphical abstract.

摘要

本工作评估了一种新型的定量元素生物成像标准化策略。更具体地说,通过使用基于明胶的微滴标准进行多点校准来进行多元素定量分析,并使用内部生产的参考材料进行验证。通过微点胶全自动沉积微滴,可确保 400 ± 5 pL 的精确标准体积,从而形成直径约 200 μm 的液滴。微滴标准的小尺寸和低分散激光烧蚀设置的使用,大大减少了 LA-ICPMS 校准所需的分析时间。因此,作为一项关键进展,高通量分析(像素采集率超过 200 Hz)能够建立成像测量序列,其质量控制和标准化样品与基于 ICP-MS 的溶液定量分析相当。对校准方法的分析性能指标(如检测限、精密度和准确度)进行了评估,包括铂和来自低质量范围(磷、铜和锌)的具有生物学关键功能的元素。作为概念验证应用,该工具集用于研究临床相关浓度下金属抗癌药物在多细胞肿瘤球体模型中的积累。

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