Department of Chemistry, University of Waikato, Hamilton, New Zealand.
Phytochem Anal. 2012 Jul-Aug;23(4):285-91. doi: 10.1002/pca.1356. Epub 2011 Sep 30.
Microcystins (MCs) are a group of cyanotoxins which pose a serious health threat when present in aquatic systems. Quantitative analysis of MCs by matrix-assisted laser desorption/ionisation-time of flight (MALDI-TOF) mass spectrometry has potential for the processing of large numbers of samples quickly and economically. The existing method uses an expensive internal standard and protocols that are incompatible with automated sample preparation and data acquisition.
To produce a MALDI-TOF sample preparation technique for the quantitation of MCs that not only maintains reproducibility and sensitivity, but is also compatible with an automated work-flow.
Seven different MALDI-TOF sample preparations were assessed for signal reproducibility (coefficient of variation) and sensitivity (method detection limit) using a cost-effective internal standard (angiotensin I). The best preparation was then assessed for its quantitative performance using three different MC congeners ([Dha⁷] MC-LR, MC-RR and MC-YR).
The sensitivity of six of the preparations was acceptable, as was the reproducibility for two thin-layer preparations performed on a polished steel target. Both thin-layer preparations could be used with a MALDI-TOF mass spectrometer that automatically acquires data, and one could be used in an automated sample preparation work-flow. Further investigation using the thin-layer spot preparation demonstrated that linear quantification of three different MC congeners was possible.
The study demonstrates that with different sample preparation methods and modern instrumentation, large numbers of samples can be analysed rapidly for MCs at low cost.
微囊藻毒素(MCs)是一组蓝藻毒素,当它们存在于水生系统中时,会对健康造成严重威胁。基质辅助激光解吸/电离-飞行时间(MALDI-TOF)质谱法对 MCs 的定量分析具有快速、经济地处理大量样品的潜力。现有的方法使用昂贵的内标和与自动化样品制备和数据采集不兼容的方案。
开发一种 MALDI-TOF 样品制备技术,用于定量 MCs,不仅保持重现性和灵敏度,而且还与自动化工作流程兼容。
使用一种具有成本效益的内标(血管紧张素 I)评估了七种不同的 MALDI-TOF 样品制备方法的信号重现性(变异系数)和灵敏度(方法检测限)。然后,使用三种不同的 MC 同系物([Dha⁷] MC-LR、MC-RR 和 MC-YR)评估最佳制备方法的定量性能。
六种制备方法的灵敏度是可以接受的,两种在抛光钢靶上进行的薄层制备的重现性也是可以接受的。两种薄层制备都可以与自动采集数据的 MALDI-TOF 质谱仪一起使用,其中一种可以用于自动化样品制备工作流程。使用薄层斑点制备的进一步研究表明,三种不同 MC 同系物的线性定量是可能的。
该研究表明,使用不同的样品制备方法和现代仪器设备,可以以低成本快速分析大量 MC 样品。