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采用表面增强激光解吸/电离飞行时间质谱对尿液进行蛋白质组学分析。

Proteomics profiling of urine with surface enhanced laser desorption/ionization time of flight mass spectrometry.

作者信息

Roelofsen Han, Alvarez-Llamas Gloria, Schepers Marianne, Landman Karloes, Vonk Roel J

机构信息

University of Groningen, University Medical Centre Groningen, Centre for Medical Biomics, Groningen, The Netherlands.

出版信息

Proteome Sci. 2007 Jan 15;5:2. doi: 10.1186/1477-5956-5-2.

Abstract

BACKGROUND

Urine consists of a complex mixture of peptides and proteins and therefore is an interesting source of biomarkers. Because of its high throughput capacity SELDI-TOF-MS is a proteomics technology frequently used in biomarker studies. We compared the performance of seven SELDI protein chip types for profiling of urine using standard chip protocols.

RESULTS

Performance was assessed by determining the number of detectable peaks and spot to spot variation for the seven array types and two different matrices: SPA and CHCA. A urine sample taken from one healthy volunteer was applied in eight-fold for each chip type/matrix combination. Data were analyzed for total number of detected peaks (S/N > 5). Spot to spot variation was determined by calculating the average CV of peak intensities. In addition, an inventory was made of detectable peaks with each chip and matrix type. Also the redundancy in peaks detected with the different chip/matrix combinations was determined. A total of 425 peaks (136 non-redundant peaks) could be detected when combining the data from the seven chip types and the two matrices. Most peaks were detected with the CM10 chip with CHCA (57 peaks). The Q10 with CHCA (51 peaks), SEND (48 peaks) and CM10 with SPA (48 peaks) also performed well. The CM10 chip with CHCA also has the best reproducibility with an average CV for peak intensity of 13%.

CONCLUSION

The combination of SEND, CM10 with CHCA, CM10 with SPA, IMAC-Cu with SPA and H50 with CHCA provides the optimal information from the urine sample with good reproducibility. With this combination a total of 217 peaks (71 non-redundant peaks) can be detected with CV's ranging from 13 to 26%, depending on the chip and matrix type. Overall, CM10 with CHCA is the best performing chip type.

摘要

背景

尿液由肽和蛋白质的复杂混合物组成,因此是生物标志物的一个有趣来源。由于其高通量能力,表面增强激光解吸电离飞行时间质谱(SELDI-TOF-MS)是一种常用于生物标志物研究的蛋白质组学技术。我们使用标准芯片方案比较了七种SELDI蛋白质芯片类型在尿液分析中的性能。

结果

通过确定七种阵列类型和两种不同基质(SPA和CHCA)的可检测峰数量和点与点之间的差异来评估性能。从一名健康志愿者采集的尿液样本,针对每种芯片类型/基质组合进行八次重复检测。分析数据以确定检测到的峰总数(信噪比>5)。通过计算峰强度的平均变异系数(CV)来确定点与点之间的差异。此外,还列出了每种芯片和基质类型可检测到的峰。同时也确定了不同芯片/基质组合检测到的峰的冗余度。将七种芯片类型和两种基质的数据相结合,总共可检测到425个峰(136个非冗余峰)。使用CHCA的CM10芯片检测到的峰最多(57个峰)。使用CHCA的Q系列10芯片(51个峰)、弱阳离子交换芯片(WCX,48个峰)和使用SPA的CM10芯片(48个峰)也表现良好。使用CHCA的CM10芯片也具有最佳的重现性,峰强度的平均CV为13%。

结论

弱阳离子交换芯片(WCX)、使用CHCA的CM10芯片、使用SPA的CM10芯片、使用SPA的IMAC-Cu芯片和使用CHCA的H50芯片的组合能够从尿液样本中提供具有良好重现性的最佳信息。通过这种组合,根据芯片和基质类型的不同,可检测到总共217个峰(71个非冗余峰),CV范围为13%至26%。总体而言,使用CHCA的CM10芯片是性能最佳的芯片类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93ac/1783644/d7840053172b/1477-5956-5-2-1.jpg

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