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Integration of Continuous-Flow Accelerator Mass Spectrometry with Chromatography and Mass-Selective Detection

机译:连续流加速器质谱与色谱和质量选择检测的集成

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Physical combination of an accelerator mass spectrometry (AMS) instrument with a conventional gas chromatograph-mass spectrometer (GC/MS) is described. The resulting hybrid instrument (GC/MS/AMS) was used to monitor mass chromatograms and radiochromatograms simultaneously when ~(14)C-labeled compounds were injected into the gas chromatograph. Combination of the two instruments was achieved by splitting the column effluent and directing half to the mass spectrometer and half to a flow-through CuO reactor in line with the gas-accepting AMS ion source. The reactor converts compounds in the GC effluent to CO_(2) as required for function of the ion source. With cholesterol as test compound, the limits of quantitation were 175 pg and 0.00175 dpm injected. The accuracy achieved in analysis of five nonzero calibration standards and three quality control standards, using cholesterol-2,2,3,4,4,6-d_(6) as injection standard, was 100 +- 11.8percent with selected ion monitoring and 100 +- 16percent for radiochromatography. Respective values for interday precision were 1.0-3.2 and 22-32percent. Application of GC/MS/AMS to a current topic of interest was demonstrated in a model metabolomic study in which cultured primary hepatocytes were given [~(14)C]glucose and organic acids excreted into the culture medium were analyzed.
机译:描述了加速器质谱仪(AMS)仪器与常规气相色谱质谱仪(GC / MS)的物理组合。当将〜(14)C标记的化合物注入气相色谱仪中时,使用所得的混合仪器(GC / MS / AMS)同时监测质谱图和放射色谱图。这两种仪器的组合是通过将色谱柱流出物分开并将一半引导至质谱仪,将另一半引导至与接受气体的AMS离子源一致的流通式CuO反应器实现的。反应器根据离子源功能的需要将GC流出物中的化合物转换为CO_(2)。以胆固醇为测试化合物,定量限为175 pg和0.00175 dpm。使用胆固醇-2,2,3,4,4,6-d_(6)作为进样标准,分析五种非零校准标准品和三种质量控制标准品时获得的准确度为100±11.8%,并且选择了离子监测和放射色谱法为100±16%。日间精度的分别为1.0-3.2%和22-32%。在模型代谢组学研究中证明了GC / MS / AMS在当前感兴趣的主题中的应用,在该研究中,对培养的原代肝细胞给予了[〜(14)C]葡萄糖,并分析了分泌到培养基中的有机酸。

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