首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Thermal desorption comprehensive two-dimensional gas chromatography coupled to variable-energy electron ionization time-of-flight mass spectrometry for monitoring subtle changes in volatile organic compound profiles of human blood
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Thermal desorption comprehensive two-dimensional gas chromatography coupled to variable-energy electron ionization time-of-flight mass spectrometry for monitoring subtle changes in volatile organic compound profiles of human blood

机译:热解吸综合二维气相色谱耦合到可变能电子电离飞行时间质谱法,用于监测人血液挥发性有机化合物谱的微妙变化

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Blood is a matrix with high potential for forensic investigations and human rescue. Its volatile signature can be used in search exercises to locate injured or deceased individuals. Little is known, however, about the volatile organic compound (VOC) profile of blood, except that it is complex and varies while blood ages. In the present study, we used thermal desorption (TD) and comprehensive two-dimensional gas chromatography (GCxGC) coupled to variable-energy electron ionization time-of-flight mass spectrometry (TOFMS) to monitor VOC signatures of human blood. A highly complex reference standard (Century Mix) containing 108 compounds of various chemical functionalities and several homologue series of compounds was used for the purpose of transposing our previously developed cryogenically modulated GCxGC-TOFMS methods into the use of a reverse fill/flush (RFF) flow modulator. The average peak width at half height was 340 ms and the average tailing factor was 1.16. Light VOCs (down to C-4) were effectively flow modulated and exhibited minimal breakthrough over a large dynamic range spanning four orders of magnitude. Mass spectrometric detection was performed using electron impact ionization (El) carried out at 70 eV and lower energies (12,14, and 16 eV). The use of variable-energy (ve) El allowed mass spectra to be produced with less fragmentation and an increased presence of structurally significant ions and the molecular ion. This provided additional confidence in peak assignments, especially for closely eluting isomers often observed in the profiling of the headspace of blood. Variable-energy EI TD-GCxGC-TOFMS blood data sets were statistically processed using principal component analyses (PCA) and hierarchical cluster analyses (HCA). These techniques demonstrated that the effect of aging was greater than the inter-individual variation on the blood VOC profile. The combination of retention indices, low and high El MS spectra served as a strong basis to gain more confidence in analytical identification by excluding identities proposed by mass spectral databases (70 eV) for compounds contributing to the separation of blood of different ages. (C) 2017 Published by Elsevier B.V.
机译:血液是一种具有高潜力的基质,用于法医调查和人类救援。它的挥发性签名可以用于搜索练习,以定位受伤或死者的个人。然而,对于血液的挥发性有机化合物(VOC)曲线,除了它是复杂的并且在血液时代而变化之外,少于众所周知。在本研究中,我们使用热解吸(TD)和综合的二维气相色谱(GCXGC),其耦合到可变能量电子电离飞行时间质谱(TOFMS)以监测人血的VOC签名。含有108种各种化学功能和几种同源物系列化合物的高度复杂的参考标准(CENTURY MIX)用于将我们先前显影的GCXGC-TOFMS方法转发为使用反向填充/冲洗(RFF)流量调制器。半高度的平均峰值宽度为340毫秒,平均拖尾因子为1.16。光VOC(下至C-4)有效地向跨越四个数量级的大动态范围内展开并表现出最小的突破。使用在70eV和更低的能量(12,14和16eV)下进行的电子碰撞电离(EL)进行质谱检测。使用可变能量(VE)EL允许的质谱,以较少的碎裂和增加的结构显着离子和分子离子的存在。这提供了对峰值作业的额外信心,特别是在血液顶部空间剖析中经常观察到的异构体。使用主成分分析(PCA)和分层集群分析(HCA),在统计处理变量-Entegle EI TD-GCXGC-TOFMS血液数据集。这些技术表明,老化的效果大于血液VOC型材的间间变化。保留指数,低和高的EL MS光谱的组合是强的基础,以通过排除质谱数据库(70eV)提出的含有不同年龄血液分离的化合物提出的标识来增强对分析鉴定的更大置信度。 (c)2017年由Elsevier B.V发布。

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