Games D E
Biomed Mass Spectrom. 1981 Sep;8(9):454-62. doi: 10.1002/bms.1200080919.
Combined gas chromatography mass spectrometry, because of its ability to provide both high sensitivity and specificity, has become a vital technique for the identification and quantitation of natural and synthetic chemicals in a wide variety of areas. Unfortunately, a very large number of organic compounds are not directly amenable to gas chromatography since they are thermally labile and/or of low volatility. Chemical modification of compounds of interest can assist in some cases, but it is not universally applicable. High performance liquid chromatography has been increasingly utilized for studies of compounds of these types since heat is not usually involved in the analysis. Combined liquid chromatography mass spectrometry would lend a new dimension to these studies, enabling the separating ability of the liquid chromatograph to be combined with the sensitivity and specificity of the mass spectrometer. Approaches to liquid chromatography mass spectrometry are discussed. Using examples from our liquid chromatographic mass spectrometric studies of natural compounds, drugs and pesticides, the current abilities of such systems to identify and quantify natural and synthetic chemicals present in a complex matrix of other chemicals are described.
气相色谱 - 质谱联用技术,因其具备高灵敏度和高特异性,已成为众多领域中鉴定和定量天然及合成化学物质的关键技术。遗憾的是,大量有机化合物因热不稳定和/或挥发性低而无法直接用于气相色谱分析。在某些情况下,对目标化合物进行化学修饰可能有所帮助,但并非普遍适用。由于分析过程通常不涉及加热,高效液相色谱已越来越多地用于此类化合物的研究。液相色谱 - 质谱联用将为这些研究带来新的维度,使液相色谱的分离能力与质谱仪的灵敏度和特异性相结合。本文讨论了液相色谱 - 质谱联用的方法。通过我们对天然化合物、药物和农药的液相色谱 - 质谱研究实例,描述了此类系统目前在鉴定和定量存在于其他化学物质复杂基质中的天然和合成化学物质方面的能力。