Geer Wallace M Ariel, Pleil Joachim D, Mentese Sibel, Oliver Karen D, Whitaker Donald A, Fent Kenneth W
U.S. Environmental Protection Agency, Office of Research and Development, National Exposure Research Laboratory, Research Triangle Park, NC, USA.
U.S. Environmental Protection Agency, Office of Research and Development, National Exposure Research Laboratory, Research Triangle Park, NC, USA.
J Chromatogr A. 2017 Sep 22;1516:114-124. doi: 10.1016/j.chroma.2017.07.082. Epub 2017 Jul 28.
Traditionally, gas chromatography-mass spectrometry (GC/MS) analysis has used a targeted approach called selected ion monitoring (SIM) to quantify specific compounds that may have adverse health effects. Due to method limitations and the constraints of preparing duplicate samples, the information that could be obtained from separately collecting the full scan chromatogram of the sample has often been sacrificed. However, the hybrid technique called synchronous SIM/scan mode alternates between the two acquisition modes, maintaining the accuracy and sensitivity of SIM for targeted analysis while also providing the full scan chromatogram for discovery of non-target compounds. This technology was assessed using calibration data and real-world breath samples from a joint EPA/NIOSH collaboration that investigated the safety of firefighters' protective gear during controlled structure burns. Collecting field samples is costly and must be performed strategically to ensure that time points and replicates are accurate and representative of the intended population. This is difficult to accomplish with firefighters who are working under volatile conditions. The synchronous SIM/scan method decreases the number of field samples that need to be collected by half and reduces error in trying to recreate time points since a breath sample from a single sorbent tube can be used to collect both the SIM and scan data simultaneously. As a practical demonstration of the method, we investigate thirty-six firefighter breath samples, document organic compounds of interest, and identify additional non-target compounds.
传统上,气相色谱 - 质谱联用(GC/MS)分析采用一种称为选择离子监测(SIM)的靶向方法来定量可能对健康有不良影响的特定化合物。由于方法的局限性以及制备重复样品的限制,通常会牺牲从单独收集样品的全扫描色谱图中获得的信息。然而,称为同步SIM/扫描模式的混合技术在两种采集模式之间交替,在保持SIM用于靶向分析的准确性和灵敏度的同时,还提供全扫描色谱图以发现非目标化合物。这项技术是通过使用校准数据和来自美国环境保护局(EPA)/美国国家职业安全与健康研究所(NIOSH)联合合作的实际呼吸样本进行评估的,该合作研究了消防员在建筑物受控燃烧期间防护装备的安全性。采集现场样本成本高昂,必须有策略地进行,以确保时间点和重复样本准确且能代表目标人群。对于在不稳定条件下工作的消防员来说,这很难做到。同步SIM/扫描方法将需要采集的现场样本数量减少了一半,并减少了在尝试重现时间点时的误差,因为来自单个吸附管的呼吸样本可用于同时收集SIM和扫描数据。作为该方法的实际演示,我们研究了36个消防员呼吸样本,记录了感兴趣的有机化合物,并识别出其他非目标化合物。