The evolution of data treatment tools in single-particle and single-cell ICP-MS analytics.

IF 3.8 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Michail Ioannis Chronakis, Björn Meermann, Marcus von der Au
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Abstract

Single-particle inductively coupled plasma-mass spectrometry (sp-ICP-MS) is one of the most powerful tools in the thriving field of nanomaterial analysis. Along the same lines, single-cell ICP-MS (sc-ICP-MS) has become an invaluable tool in the study of the variances of cell populations down to a per-cell basis. Their importance and application fields have been listed numerous times, across various reports and reviews. However, not enough attention has been paid to the immense and ongoing development of the tools that are currently available to the analytical community for the acquisition, and more importantly, the treatment of single-particle and single-cell-related data. Due to the ever-increasing demands of modern research, the efficient and dependable treatment of the data has become more important than ever. In addition, the field of single-particle and single-cell analysis suffers due to a large number of approaches for the generated data-with varying levels of specificity and applicability. As a result, finding the appropriate tool or approach, or even comparing results, can be challenging. This article will attempt to bridge these gaps, by covering the evolution and current state of the tools at the disposal of sp-ICP-MS users.

Abstract Image

单颗粒和单细胞 ICP-MS 分析中数据处理工具的演变。
在蓬勃发展的纳米材料分析领域,单颗粒电感耦合等离子体质谱仪(sp-ICP-MS)是最强大的工具之一。同样,单细胞ICP-MS(sc-ICP-MS)也已成为研究细胞群差异(精确到每个细胞)的宝贵工具。它们的重要性和应用领域已在各种报告和评论中多次列出。然而,人们对目前可供分析界用于获取,更重要的是用于处理单颗粒和单细胞相关数据的工具的巨大发展和持续发展关注不够。由于现代研究的要求不断提高,高效可靠的数据处理变得比以往任何时候都更加重要。此外,单颗粒和单细胞分析领域还存在着大量处理生成数据的方法,这些方法的特异性和适用性各不相同。因此,找到合适的工具或方法,甚至比较结果,都是一项挑战。本文将介绍 sp-ICP-MS 用户可用工具的演变和现状,试图弥补这些差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.00
自引率
4.70%
发文量
638
审稿时长
2.1 months
期刊介绍: Analytical and Bioanalytical Chemistry’s mission is the rapid publication of excellent and high-impact research articles on fundamental and applied topics of analytical and bioanalytical measurement science. Its scope is broad, and ranges from novel measurement platforms and their characterization to multidisciplinary approaches that effectively address important scientific problems. The Editors encourage submissions presenting innovative analytical research in concept, instrumentation, methods, and/or applications, including: mass spectrometry, spectroscopy, and electroanalysis; advanced separations; analytical strategies in “-omics” and imaging, bioanalysis, and sampling; miniaturized devices, medical diagnostics, sensors; analytical characterization of nano- and biomaterials; chemometrics and advanced data analysis.
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