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Optimization of LC-Orbitrap-HRMS acquisition and MZmine 2 data processing for nontarget screening of environmental samples using design of experiments

机译:使用实验设计优化LC-Orbitrap-HRMS采集和MZmine 2数据处理以进行非目标性环境样品筛选

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Liquid chromatography-high resolution mass spectrometry (LC-HRMS) is a well-established technique for nontarget screening of contaminants in complex environmental samples. Automatic peak detection is essential, but its performance has only rarely been assessed and optimized so far. With the aim to fill this gap, we used pristine water extracts spiked with 78 contaminants as a test case to evaluate and optimize chromatogram and spectral data processing. To assess whether data acquisition strategies have a significant impact on peak detection, three values of MS cycle time (CT) of an LTQ Orbitrap instrument were tested. Furthermore, the key parameter settings of the data processing software MZmine 2 were optimized to detect the maximum number of target peaks from the samples by the design of experiments (DoE) approach and compared to a manual evaluation. The results indicate that short CT significantly improves the quality of automatic peak detection, which means that full scan acquisition without additional MS2 experiments is suggested for nontarget screening. MZmine 2 detected 75-100 % of the peaks compared to manual peak detection at an intensity level of 10(5) in a validation dataset on both spiked and real water samples under optimal parameter settings. Finally, we provide an optimization workflow of MZmine 2 for LC-HRMS data processing that is applicable for environmental samples for nontarget screening. The results also show that the DoE approach is useful and effort-saving for optimizing data processing parameters.
机译:液相色谱-高分辨率质谱法(LC-HRMS)是一项用于复杂环境样品中污染物的非目标筛选的成熟技术。自动峰值检测是必不可少的,但是到目前为止,它的性能很少被评估和优化。为了填补这一空白,我们使用掺有78种污染物的原始水提取物作为测试用例,以评估和优化色谱图和光谱数据处理。为了评估数据采集策略是否会对峰检测产生重大影响,测试了LTQ Orbitrap仪器的MS循环时间(CT)的三个值。此外,通过实验设计(DoE)方法优化了数据处理软件MZmine 2的关键参数设置,以从样品中检测出最大目标峰数,并与手动评估进行了比较。结果表明,短CT显着提高了自动峰检测的质量,这意味着建议进行无附加MS2实验的全扫描采集以进行非目标筛选。在最佳参数设置下,加标水样和真实水样的验证数据集中,MZmine 2在强度数据集为10(5)时与手动峰检测相比检测到了75-100%的峰。最后,我们为LC-HRMS数据处理提供了MZmine 2的优化工作流程,该工作流程适用于非目标筛选的环境样品。结果还表明,DoE方法对于优化数据处理参数非常有用且省力。

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