Haskins W E, Wang Z, Watson C J, Rostand R R, Witowski S R, Powell D H, Kennedy R T
Department of Chemistry, University of Florida, Gainesville 32611-7200, USA.
Anal Chem. 2001 Nov 1;73(21):5005-14. doi: 10.1021/ac010774d.
Fused-silica capillary LC columns (25-microm i.d.) with 3-microm-i.d. integrated electrospray emitters interfaced to a quadrupole ion trap mass spectrometer were evaluated for high-sensitivity LC-MS2. Column preparation involved constructing frits by in situ photopolymerization of glycidyl methacrylate and trimethylolpropane trimethacrylate, preparing the electrospray emitter by pulling the column outlet to a fine tip with a CO2 laser puller, and slurry-packing the column with 5-microm reversed-phase particles. Large-volume injections were facilitated by an automated two-pump system that allowed high-flow rates for sample loading and low-flow rates for elution. Small electrospray emitters, low elution flow rates, and optimization of gradient steepness allowed a detection limit of 4 amol, corresponding to 2 pM for 1.8 microL injected on-column, for a mixture of peptides dissolved in artificial cerebral spinal fluid. The system was coupled on-line to microdialysis sampling and was used to monitor and discover endogenous neuropeptides from the globus pallidus of anesthetized male Sprague-Dawley rats. Time-segmented MS2 scans enabled simultaneous monitoring of Met-enkephalin, Leu-enkephalin, and unknown peptides. Basal dialysate levels of Met-enkephalin and Leu-enkephalin were 60 +/- 30 and 70 +/- 20 pM while K+-stimulated levels were 1,900 +/- 500 and 1,300 +/- 300 pM, respectively (n = 7). Data-dependent and time-segmented MS2 scans revealed several unknown peptides that were present in dialysate. One of the unknowns was identified as peptide I(1-10) (SPQLEDEAKE), a novel product of preproenkephalin A processing, using MS2, MS3, and database searching.
对内径为25微米、带有内径为3微米的集成电喷雾发射器的熔融石英毛细管液相色谱柱与四极杆离子阱质谱仪联用进行了高灵敏度液相色谱-二级质谱分析评估。柱制备过程包括通过甲基丙烯酸缩水甘油酯和三羟甲基丙烷三甲基丙烯酸酯的原位光聚合构建筛板,用二氧化碳激光拉拔器将柱出口拉成细尖端来制备电喷雾发射器,并用5微米反相颗粒对柱进行匀浆填充。通过自动双泵系统实现大体积进样,该系统允许在进样时装样流速高而洗脱时流速低。小电喷雾发射器、低洗脱流速以及梯度陡度的优化使得检测限达到4阿托摩尔,对于溶解在人工脑脊液中的肽混合物,相当于进样1.8微升时柱上浓度为2皮摩尔。该系统与微透析采样在线联用,并用于监测和发现麻醉的雄性斯普拉格-道利大鼠苍白球中的内源性神经肽。时间分段二级质谱扫描能够同时监测甲硫氨酸脑啡肽、亮氨酸脑啡肽和未知肽。甲硫氨酸脑啡肽和亮氨酸脑啡肽的基础透析液水平分别为60±30皮摩尔和70±20皮摩尔,而钾离子刺激后的水平分别为1900±500皮摩尔和1300±300皮摩尔(n = 7)。数据依赖型和时间分段二级质谱扫描揭示了透析液中存在的几种未知肽。其中一种未知肽被鉴定为肽I(1-10)(SPQLEDEAKE),它是前脑啡肽原A加工的一种新产物,采用了二级质谱、三级质谱和数据库搜索技术。