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Capillary electrophoresis mass spectrometry and its application to he analysis of biological mixtures

机译:毛细管电泳质谱法及其在生物混合物分析中的应用

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Capillary electrophoresis (CE) mass spectrometry (MS), with its ability to separate compounds present in extremely small volume samples rapidly, with high separation efficiency, and with compound identification capability based on molecular weight, is an extremely valuable analytical technique for the analysis of complex biological mixtures. The highest sensitivities and separation efficiencies are usually achieved by using narrow capillaries (5-50 μm i.d.) and by using sheathless CE-to-MS interfaces. The difficulties in CE-to-MS interfacing and the limited loadability of these narrow columns, however, have prevented CE-MS from becoming a widely used analytical technique. To remedy these limitations, several CE-MS interfacing techniques have recently been introduced. While electrospray ionization is the most commonly used ionization technique for interfacing CE-to-MS, matrix assisted laser desorption ionization has also been used, using both on-line and off-line techniques. Moreover, the high concentration detection limit of CE has been addressed by development of several sample concentration and sample focusing methods. In addition, a wide variety of techniques such as capillary zone electrophoresis, capillary isoelectric focusing, and on-column transient isotachophoresis have now been interfaced to MS. These advances have resulted in a rapid increase in the use of CE-MS in the analysis of complex biological mixtures. CE-MS has now been successfully applied to the analysis of a wide variety of compounds including amino acids, protein digests, protein mixtures, single cells, oligonucleotides, and various small molecules relevant to the pharmaceutical industry.
机译:毛细管电泳(CE)质谱(MS)能够快速分离出极少量样品中存在的化合物,具有很高的分离效率,并且具有基于分子量的化合物鉴定能力,是分析乙醛的极有价值的分析技术。复杂的生物混合物。通常通过使用狭窄的毛细管(5-50μmi.d.)和使用无鞘CE-to-MS接口可获得最高的灵敏度和分离效率。 CE到MS的连接困难以及这些窄柱的可装载性有限,阻止了CE-MS成为广泛使用的分析技术。为了弥补这些限制,最近已经引入了几种CE-MS接口技术。虽然电喷雾电离是用于CE-to-MS接口的最常用电离技术,但也使用在线和离线技术来使用基质辅助的激光解吸电离。而且,通过开发几种样品浓度和样品聚焦方法已经解决了CE的高浓度检测限。此外,多种技术(例如毛细管区带电泳,毛细管等电聚焦和柱上瞬时等速电泳)现已与MS联用。这些进展导致CE-MS在分析复杂生物混合物中的使用迅速增加。现在,CE-MS已成功应用于各种化合物的分析,包括氨基酸,蛋白质消化物,蛋白质混合物,单细胞,寡核苷酸以及与制药行业相关的各种小分子。

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