Rathahao-Paris Estelle, Alves Sandra, Boussaid Nawel, Picard-Hagen Nicole, Gayrard Véronique, Toutain Pierre-Louis, Tabet Jean-Claude, Rutledge Douglas N, Paris Alain
1 UMR Ingénierie Procédés Aliments, AgroParisTech, Inra, Université Paris-Saclay, Massy, France.
2 Sorbonne Université, Faculté des Sciences et de l'Ingénierie, Institut Parisien de Chimie Moléculaire (IPCM), Paris, France.
Eur J Mass Spectrom (Chichester). 2019 Apr;25(2):251-258. doi: 10.1177/1469066718806450. Epub 2018 Oct 18.
Direct injection-mass spectrometry can be used to perform high-throughput metabolomic fingerprinting. This work aims to evaluate a global analytical workflow in terms of sample preparation (urine sample dilution), high-resolution detection (quality of generated data based on criteria such as mass measurement accuracy and detection sensitivity) and data analysis using dedicated bioinformatics tools. Investigation was performed on a large number of biological samples collected from sheep infected or not with scrapie. Direct injection-mass spectrometry approach is usually affected by matrix effects, eventually hampering detection of some relevant biomarkers. Reference compounds were spiked in biological samples to help evaluate the quality of direct injection-mass spectrometry data produced by Fourier Transform mass spectrometry. Despite the potential of high-resolution detection, some drawbacks still remain. The most critical is the presence of matrix effects, which could be minimized by optimizing the sample dilution factor. The data quality in terms of mass measurement accuracy and reproducible intensity was evaluated. Good repeatability was obtained for the chosen dilution factor (i.e., 2000). More than 150 analyses were performed in less than 16 hours using the optimized direct injection-mass spectrometry approach. Discrimination of different status of sheeps in relation to scrapie infection (i.e., scrapie-affected, preclinical scrapie or healthy) was obtained from the application of Shrinkage Discriminant Analysis to the direct injection-mass spectrometry data. The most relevant variables related to this discrimination were selected and annotated. This study demonstrated that the choice of appropriated dilution faction is indispensable for producing quality and informative direct injection-mass spectrometry data. Successful application of direct injection-mass spectrometry approach for high throughput analysis of a large number of biological samples constitutes the proof of the concept.
直接进样质谱法可用于进行高通量代谢组学指纹分析。这项工作旨在从样品制备(尿液样品稀释)、高分辨率检测(基于质量测量准确性和检测灵敏度等标准生成的数据质量)以及使用专用生物信息学工具进行数据分析等方面评估一种全面的分析工作流程。对从感染或未感染羊瘙痒病的绵羊身上采集的大量生物样品进行了研究。直接进样质谱法通常受基质效应影响,最终会妨碍一些相关生物标志物的检测。将参考化合物添加到生物样品中,以帮助评估傅里叶变换质谱法产生的直接进样质谱数据的质量。尽管高分辨率检测具有潜力,但仍存在一些缺点。最关键的是存在基质效应,可通过优化样品稀释因子将其降至最低。评估了质量测量准确性和强度可重复性方面的数据质量。对于选定的稀释因子(即2000)获得了良好的重复性。使用优化的直接进样质谱法在不到16小时内进行了150多次分析。通过将收缩判别分析应用于直接进样质谱数据,实现了对绵羊与羊瘙痒病感染相关的不同状态(即受羊瘙痒病影响、临床前羊瘙痒病或健康)的区分。选择并注释了与这种区分最相关的变量。这项研究表明,选择合适的稀释因子对于生成高质量且信息丰富的直接进样质谱数据是必不可少的。直接进样质谱法成功应用于大量生物样品的高通量分析构成了概念验证。