Nicholas R Allen, Kanwal Jeet, Tolulope Ogunsanya, Ian Ferraro, Nancy Fernandes, Huishan Li, Thaddaeus Webster, Carrie Mason, Anyin Li
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引用次数: 0
摘要
荧光标记的聚糖同源混合物使用荧光定量,然后用于评估在微、纳米和飞飞流模式下电喷雾电离的电离性能。纳米esi产生了与钠和钙内合的更高的(2+和3+)带电离子。相比之下,femtoESI有利于金属加合物生成[M + H]+离子,即使是非挥发性盐高达1 mM (NaCl)和100 μM (CaCl2)。对于标记的葡萄糖均聚物(GHP)聚糖,nanoESI和femtoESI的检出限分别为0.81 nM和3 nM。通过LC分离和更高的流速,传统的微流ESI检测到的多糖浓度降低了10倍。总的来说,纳米esi在相对电离效率(RIE)上具有最佳的均匀性。当对所有载流子形成的分析物离子的强度进行汇总时,中等大小聚糖(10 ~ 16个葡萄糖单位)的RIE似乎是均匀的(RIE 95%-105%)。对于较小的糖组分(1-5葡萄糖单位),飞质ESI比纳米ESI和常规ESI具有更好的均匀性。对于标记的IgG n -聚糖,化学结构对其电离效率的影响体现在它们在不同电离模式下的RIE趋势之间的强相关性。
Ionization Characteristics of Glycan Homologues in Various Modes of Electrospray.
Fluorescence labeled glycan homologous mixtures were quantified using fluorescence and then used to evaluate ionization performances in electrospray ionization at micro, nano, and femto flow modes. nanoESI produced higher (2+ and 3+) charged ions adducted with sodium and calcium. In comparison, femtoESI was found to favor the generation of [M + H]+ ions against metal adducts, even with nonvolatile salts up to 1 mM for NaCl and 100 μM for CaCl2. For labeled glucose homopolymer (GHP) glycans, nanoESI and femtoESI had 0.81 and 3 nM detection limits, respectively. With LC separation and a much higher flow rate, conventional microflow ESI detected all glycans with 10-fold lower concentrations. Overall, nanoESI had the optimum uniformity in the relative ionization efficiency (RIE). When summing up intensities of analyte ions formed with all charge carriers, the RIE of the midsized glycans (10 to 16 glucose units) appear to be uniform (RIE 95%-105%). For the smaller (1-5 glucose units) glycan components, femtoESI provided better uniformity than nanoESI and conventional ESI. For the labeled IgG N-glycans, the impact of chemical structure on the ionization efficiency was revealed by the strong correlation between their RIE trends in different ionization modes.
期刊介绍:
The Journal of the American Society for Mass Spectrometry presents research papers covering all aspects of mass spectrometry, incorporating coverage of fields of scientific inquiry in which mass spectrometry can play a role.
Comprehensive in scope, the journal publishes papers on both fundamentals and applications of mass spectrometry. Fundamental subjects include instrumentation principles, design, and demonstration, structures and chemical properties of gas-phase ions, studies of thermodynamic properties, ion spectroscopy, chemical kinetics, mechanisms of ionization, theories of ion fragmentation, cluster ions, and potential energy surfaces. In addition to full papers, the journal offers Communications, Application Notes, and Accounts and Perspectives