首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >RECENT PROGRESS IN THE ANALYSIS OF SUGAR MONOMERS FROM COMPLEX MATRICES USING CHROMATOGRAPHY IN CONJUNCTION WITH MASS SPECTROMETRY OR STAND-ALONE TANDEM MASS SPECTROMETRY [Review]
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RECENT PROGRESS IN THE ANALYSIS OF SUGAR MONOMERS FROM COMPLEX MATRICES USING CHROMATOGRAPHY IN CONJUNCTION WITH MASS SPECTROMETRY OR STAND-ALONE TANDEM MASS SPECTROMETRY [Review]

机译:色谱与质谱联用或单机串联质谱联用分析复杂基质中的糖单体的最新进展[综述]

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摘要

Analysis of trace levels of carbohydrate monomers in complex matrices requires excellent discrimination of the peaks of interest from background noise. Minimizing contaminating peaks introduced during sample preparation and chromatography is extremely important. However, the exquisite selectivity of the mass spectrometer is essential as a chromatographic detector in this regard. Traditionally gas chromatography-mass spectrometry (GC-MS) has been the method of choice for trace analysis of derivatized carbohydrates. Recent improvements in commercial tandem mass spectrometers (MS-MS) are encouraging the use of GC-MS-MS for improved specificity in trace analysis. There has also been an explosion in applications of electrospray ionization (ESI) for sensitive introduction of polar molecules (including sugars) into the mass spectrometer. This has encouraged ongoing developments in high-performance liquid chromatography-mass spectrometry (LC-MS) and MS-MS of underivatized carbohydrates. This has the potential to dramatically simplify sample preparation, However, as yet LC-MS and MS-MS do not match the sensitivity of GC-MS or GC-MS-MS. Developments in analysis of sugar monomers from complex matrices using chromatography (GC/LC) in conjunction with mass spectrometry (MS, MS-MS) or stand-alone MS-MS are discussed.
机译:分析复杂基质中痕量的碳水化合物单体需要从背景噪声中很好地区分目标峰。最大限度地减少样品制备和色谱分析过程中引入的污染峰非常重要。但是,在这方面,质谱仪的精湛选择性对于色谱检测器至关重要。传统上,气相色谱-质谱法(GC-MS)已成为衍生化碳水化合物进行痕量分析的首选方法。商业串联质谱仪(MS-MS)的最新改进鼓励使用GC-MS-MS提高痕量分析的特异性。在电喷雾电离(ESI)的应用中,用于将极性分子(包括糖)灵敏地引入质谱仪的应用领域也出现了爆炸式增长。这鼓励了未衍生碳水化合物的高效液相色谱-质谱(LC-MS)和MS-MS的不断开发。这有可能极大简化样品的制备,但是,由于LC-MS和MS-MS仍无法达到GC-MS或GC-MS-MS的灵敏度。讨论了使用色谱法(GC / LC)结合质谱法(MS,MS-MS)或独立的MS-MS分析复杂基质中的糖单体的进展。

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