首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Multiple headspace sampling coupled to a programmed temperature vaporizer to improve sensitivity in headspace-gas chromatography. Determination of aldehydes
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Multiple headspace sampling coupled to a programmed temperature vaporizer to improve sensitivity in headspace-gas chromatography. Determination of aldehydes

机译:多个顶部空间采样耦合到编程温度蒸发器,提高顶空 - 气相色谱中的灵敏度。 醛的测定

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The improvement of sensitivity in headspace (HS) sampling of not very volatile analytes constitutes a challenge that has usually been approached through coupling with additional techniques. Here we propose a new methodology for increasing sensitivity through a multistep approach. This proof of concept is based on direct coupling of a headspace sampler with a programmed temperature vaporizer (PTV) and a gas chromatograph (GC), with mass spectrometry (MS) detection. Analytes are extracted from the same vial in a stepwise procedure, splitting the headspace generation time of conventional HS into four periods and using the PTV to cryogenically trap the analytes during the successive HS samplings. Solvent vent mode is mandatory in order to retain the analytes, purging the gas solvent at an adequate initial low temperature and flash-heating the PTV liner in a quick ramp (720 degrees C/rnin), once the HS samplings are finished. Linear aldehydes, from pentanal to decanal, possible biomarkers of several diseases have been selected as model compounds. This multiple HS method has been compared with conventional HS, and it has been validated in terms of linearity, limits of detection, repeatability, reproducibility and accuracy. The limits of detection (LOD) ranged from 0.004 to 0.159 mu g/L. Enrichment factors (EF) in relation to the conventional HS method ranged from 3.0 to 6.7, except for pentanal (EF: 0.8), which is too volatile and polar to be trapped in the PTV with the multiple HS methodology. Similar enrichment factors were obtained in a urine sample.
机译:页空间(HS)的敏感性的提高不是非常挥发性分析物的采样构成了通常通过与附加技术耦合来接近的挑战。在这里,我们提出了一种通过多步行方法提高敏感性的新方法。该概念证明基于具有编程温度蒸发器(PTV)和气相色谱仪(GC)的顶空采样器的直接耦合,具有质谱(MS)检测。在逐步过程中从相同的小瓶中提取分析物,将传统HS的顶空生成时间分成四个时段,并使用PTV在连续的HS采样期间低温捕获分析物。溶剂通气模式是强制性的,以便保留分析物,在足够的初始低温下吹扫气体溶剂,并在快速斜坡中闪蒸PTV衬垫(720℃/ rnin),一旦HS采样结束。线性醛,从彭洲到癸醛,已经选择了几种疾病的可能生物标志物作为模型化合物。这种多HS方法已经与传统的HS进行了比较,并且已经在线性,检测,重复性,再现性和准确性的限制来验证。检测限(LOD)的限制范围为0.004至0.159μg/ l。与传统HS方法相关的富集因子(EF)范围为3.0至6.7,除了彭洲(EF:0.8)除外,这对于具有多个HS方法的PTV捕获过于挥发和极性。在尿液样品中获得了类似的富集因子。

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