首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Enhancement of Sensitivity and Resolution of Surface-Enhanced Laser Desorption/Ionization Time-of-Flight Mass Spectrometric Records for Serum Peptides Using Time-Series Analysis Techniques
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Enhancement of Sensitivity and Resolution of Surface-Enhanced Laser Desorption/Ionization Time-of-Flight Mass Spectrometric Records for Serum Peptides Using Time-Series Analysis Techniques

机译:使用时间序列分析技术提高血清肽的表面增强激光解吸/电离飞行时间质谱记录的灵敏度和分辨率

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Background: Measurement of peptide/protein concentrations in biological samples for biomarker discovery commonly uses high-sensitivity mass spectrometers with a surface-processing procedure to concentrate the important peptides. These time-of-flight (TOF) instruments typically have low mass resolution and considerable electronic noise associated with their detectors. The net result is unnecessary overlapping of peaks, apparent mass jitter, and difficulty in distinguishing mass peaks from background noise. Many of these effects can be reduced by processing the signal using standard time-series background subtraction, calibration, and filtering techniques.Methods: Surface-enhanced laser desorption/ionization (SELDI) spectra were acquired on a PBS II instrument from blank, hydrophobic, and IMAC-Cu ProteinChip? arrays (Ciphergen Biosystems, Inc.) incubated with calibration peptide mixtures or pooled serum. TOF data were recorded after single and multiple laser shots at different positions. Correlative analysis was used for time-series calibration. Target filters were used to suppress noise and enhance resolution after baseline removal and noise rescaling.Results: The developed algorithms compensated for the electronic noise attributable to detector overload, removed the baseline caused by charge accumulation, detected and corrected mass peak jitter, enhanced signal amplitude at higher masses, and improved the resolution by using a deconvolution filter.Conclusions: These time-series techniques, when applied to SELDI-TOF data before any peak identification procedure, can improve the data to make the peak identification process simpler and more robust. These improvements may be applicable to most TOF instrumentation that uses analog (rather than counting) detectors.
机译:背景:用于生物标志物发现的生物样品中肽/蛋白质浓度的测量通常使用具有表面处理程序的高灵敏度质谱仪来浓缩重要的肽。这些飞行时间(TOF)仪器通常具有较低的质量分辨率和与其检测器相关的大量电子噪声。最终结果是峰不必要的重叠,明显的质量抖动以及难以将质量峰与背景噪声区分开。通过使用标准的时间序列背景减法,校准和滤波技术处理信号,可以减少许多这些影响。方法:表面增强的激光解吸/电离(SELDI)光谱是在PBS II仪器上从空白,疏水,和IMAC-Cu ProteinChip?用校准肽混合物或混合血清孵育的微阵列(Ciphergen Biosystems,Inc.)。在不同位置进行一次和多次激光射击后,记录了TOF数据。相关分析用于时间序列校准。目标滤波器用于抑制噪声并在去除基线和重新调整噪声后提高分辨率。结果:开发的算法可补偿由于检测器过载引起的电子噪声,消除了由电荷积累引起的基线,检测到并校正了质量峰抖动,增强了信号幅度结论:这些时间序列技术在任何峰识别过程之前应用于SELDI-TOF数据时,可以改善数据,使峰识别过程更简单,更可靠。这些改进可能适用于大多数使用模拟(而非计数)检测器的TOF仪器。

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