Wei Hui, Nolkrantz Kerstin, Parkin Mark C, Chisolm Claire N, O'Callaghan James P, Kennedy Robert T
Department of Chemistry and Department of Pharmacology, University of Michigan, Ann Arbor, Michigan 48109, USA.
Anal Chem. 2006 Jul 1;78(13):4342-51. doi: 10.1021/ac052196x.
Capillary liquid chromatography (CLC) coupled off-line with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) and TOF/TOF-MS were explored for identification and quantification of neuropeptides in microwave-fixed rat brain tissue. Sample was separated by gradient elution on 50-mum-inner diameter reversed-phase columns at 180 nL/min. Effluent was mixed with matrix solution and transferred to a MALDI target plate by pulsed electric field deposition, yielding sample spots with 200-300-mum diameter. Mass detection limits as low as 2 amol, corresponding to 1 pM concentration, were achieved for neuropeptides. CLC-MALDI-TOF-MS analysis of microwave-fixed rat striatum tissue yielded detection of over 400 distinctive peaks. CLC-MALDI-TOF/TOF-MS allowed identification of 10 peptides including 3 novel peptides. Quantification was evaluated using substance P as analyte and 15N3-labeled substance P as an internal standard. Quantification of substance P revealed approximately 6.8-fold higher levels than previously reported in the rat striatum. This increase is attributed to use of microwave fixation, which prevented degradation of the peptide, aggressive extraction procedures, and accounting for oxidation of substance P in the analysis. These results demonstrate that CLC-MALDI-TOF-MS is a versatile tool for neuropeptide analysis in brain tissue by allowing for detection, identification, and quantification.
采用毛细管液相色谱(CLC)与基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)和TOF/TOF-MS离线联用技术,对微波固定的大鼠脑组织中的神经肽进行鉴定和定量分析。样品在50μm内径的反相柱上以180 nL/min的流速进行梯度洗脱分离。流出物与基质溶液混合,通过脉冲电场沉积转移到MALDI靶板上,得到直径为200 - 300μm的样品斑点。神经肽的质量检测限低至2 amol,对应浓度为1 pM。对微波固定的大鼠纹状体组织进行CLC-MALDI-TOF-MS分析,检测到400多个独特的峰。CLC-MALDI-TOF/TOF-MS能够鉴定出10种肽,其中包括3种新肽。以P物质为分析物,15N3标记的P物质为内标进行定量评估。P物质的定量结果显示,其水平比先前报道的大鼠纹状体中的水平高约6.8倍。这种增加归因于使用了微波固定,它防止了肽的降解、采用了积极的提取程序以及在分析中考虑了P物质的氧化。这些结果表明,CLC-MALDI-TOF-MS通过实现检测、鉴定和定量,是脑组织中神经肽分析的一种通用工具。