Emmett M R, White F M, Hendrickson C L, Shi S D, Marshall A G
Center for Interdisciplinary Magnetic Resonance, Florida State University, Tallahassee 32310, USA.
J Am Soc Mass Spectrom. 1998 Apr;9(4):333-40. doi: 10.1016/S1044-0305(97)00287-0.
A microbore electrospray (ESI) injection system has been adapted to our 9.4-tesla ESI FT-ICR mass spectrometer, greatly enhancing the stability and sensitivity of the system. Spray was generated from micro-ESI needles made from sharply tapered, polished fused silica capillaries of 25 to 50 microns inner diameter. Micro-ESI permits low-level sample analysis by constant infusion at sub-microL/min flow rate over a wide range of solvent conditions in both positive- and negative-ion mode. The system is flexible and allows rapid conversion to allow routine LC/MS analysis on low-level mixtures presented in biological media. LC/MS analyses were accomplished by replacing micro-ESI needles with capillaries packed with reverse phase retention media to permit analyte concentration and purification prior to analysis (micro-ESI/LC). A unique nano-flow LC pumping system was developed, capable of producing a true unsplit solvent gradient at flow rates below 1 microL/min. The micro-ESI/LC FT-ICR system produces mass spectra from a mixture of three neuroactive peptides at a concentration of 500 amol/microL (5 fmol each total loaded) in biological salts with baseline separation, signal-to-noise ratio of > 10:1 and mass resolving power > 5000. These results represent a reduction in detection limit by a factor of approximately 2 x 10(6) over the best previously published LC/FT-ICR MS data.
一种微径电喷雾(ESI)进样系统已适配于我们的9.4特斯拉ESI傅里叶变换离子回旋共振质谱仪,极大地提高了系统的稳定性和灵敏度。喷雾由内径为25至50微米的尖锐锥形、抛光熔融石英毛细管制成的微ESI针产生。微ESI允许在正负离子模式下的广泛溶剂条件下,以亚微升/分钟的流速通过恒流进样进行低水平样品分析。该系统灵活,可快速转换以对生物介质中呈现的低水平混合物进行常规LC/MS分析。通过用填充有反相保留介质的毛细管替换微ESI针来完成LC/MS分析,以便在分析前对分析物进行浓缩和纯化(微ESI/LC)。开发了一种独特的纳流LC泵系统,能够在流速低于1微升/分钟时产生真正的无分流溶剂梯度。微ESI/LC傅里叶变换离子回旋共振系统在生物盐中从浓度为500 amol/微升(每种总加载量为5 fmol)的三种神经活性肽混合物中产生质谱,具有基线分离、信噪比>10:1和质量分辨率>5000。这些结果表明,与之前发表的最佳LC/傅里叶变换离子回旋共振质谱数据相比,检测限降低了约2×10⁶倍。