Bruegel Mathias, Planert Mathis, Baumann Sven, Focke Almut, Bergh Florian Then, Leichtle Alexander, Ceglarek Uta, Thiery Joachim, Fiedler Georg Martin
Institute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, University Hospital Leipzig, Liebigstrasse 27, Leipzig, Germany.
J Proteomics. 2009 May 2;72(4):608-15. doi: 10.1016/j.jprot.2008.11.018. Epub 2008 Dec 7.
Peptidome profiling of human cerebrospinal fluid (CSF) is a promising tool to identify novel disease-associated biomarkers. Our aim was to develop a standardized protocol for reproducible peptidome profiling of CSF using magnetic bead (MB) separation followed by MALDI-TOF MS. Peptidome fractionation and profiling of CSF were performed using MBs with different surface functionalities. We investigated exogenous variables (storage conditions, freeze-thaw-cycles) and endogenous interferences (albumin, immunoglobulin, blood, leukocytes) in pooled CSF samples. We detected approximately 500 signals with an S/N ratio >10 and an overlap frequency of about 40% in non-pathological CSF. Within- and between-day imprecisions in relative signal intensities ranged from 3 to 28% and 7 to 47%, respectively. CSF storage at room temperature for up to 6 h and at 4 degrees C for up to 3 days did not significantly influence the mass spectra. Consecutive freeze-thaw-cycles significantly affected the mass spectra. High albumin and immunoglobulin content altered the CSF preparation using MB-HIC C8 beads. Blood contamination showed no effect on mass spectra up to a hemoglobin concentration of 0.075 micromol/L. The presence of leukocytes up to a cell number of 30 Mpt/L did not affect mass spectra. Our reliable pretreatment protocol allows standardization of preanalytical modalities and thereby enables reproducible peptidome profiling of human CSF using MB separation followed by MALDI-TOF MS.
对人类脑脊液(CSF)进行肽组分析是鉴定新型疾病相关生物标志物的一种有前景的工具。我们的目标是开发一种标准化方案,用于使用磁珠(MB)分离然后进行基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)对CSF进行可重复的肽组分析。使用具有不同表面功能的磁珠对CSF进行肽组分级分离和分析。我们研究了合并的CSF样本中的外源性变量(储存条件、冻融循环)和内源性干扰因素(白蛋白、免疫球蛋白、血液、白细胞)。在非病理性CSF中,我们检测到约500个信噪比>10且重叠频率约为40%的信号。相对信号强度的日内和日间不精密度分别为3%至28%和7%至47%。CSF在室温下储存长达6小时以及在4℃下储存长达3天对质谱没有显著影响。连续的冻融循环显著影响质谱。高白蛋白和免疫球蛋白含量改变了使用MB-HIC C8磁珠的CSF制备过程。血红蛋白浓度高达0.075微摩尔/升时,血液污染对质谱没有影响。白细胞数量高达30个/微升时的存在对质谱没有影响。我们可靠的预处理方案允许对分析前模式进行标准化,从而能够使用MB分离然后进行MALDI-TOF MS对人类CSF进行可重复的肽组分析。