Lazar I M, Ramsey R S, Sundberg S, Ramsey J M
Chemical and Analytical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6365, and Caliper Technologies Corporation, Mountain View, California 94043-2234.
Anal Chem. 1999 Sep 1;71(17):3627-31. doi: 10.1021/ac990373m.
A microfabricated microfluidic device coupled with a nanospray tip for electrospray ionization of dilute solutions is described. The device has been interfaced with a time-of-flight mass spectrometer and evaluated for sensitive, high-speed detection of peptides and proteins. The electrospray voltage was applied through the microchip to the nanospray capillary that was attached at the end of a microfabricated channel. Fluid delivery rates were 20-30 nL min(-)(1) through the hybridized structure without any pressure assistance. On-line microchip electrophoresis has been demonstrated and the effect of the capillary-chip junction on band broadening examined. Full mass spectra are acquired within 10-20 ms at 50-100 spectra s(-)(1) storage rates. Detection of subattomole levels of sample from a 100 nM solution is demonstrated for infusion experiments.
描述了一种与纳米喷雾尖端耦合的微制造微流控装置,用于稀溶液的电喷雾电离。该装置已与飞行时间质谱仪连接,并对肽和蛋白质的灵敏、高速检测进行了评估。通过微芯片向连接在微制造通道末端的纳米喷雾毛细管施加电喷雾电压。在没有任何压力辅助的情况下,通过杂交结构的流体输送速率为20-30 nL min(-)(1)。已经证明了在线微芯片电泳,并研究了毛细管-芯片连接对谱带展宽的影响。在50-100 spectra s(-)(1)的存储速率下,在10-20 ms内获得全质谱。对于注入实验,证明了从100 nM溶液中检测到亚阿托摩尔水平的样品。