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TiO 纳米线阵列上生物基质中磷酸肽和磷脂的选择性富集及其用于内萃取电喷雾电离质谱的直接分子特征分析。

Selective Enrichment of Phosphopeptides and Phospholipids from Biological Matrixes on TiO Nanowire Arrays for Direct Molecular Characterization by Internal Extractive Electrospray Ionization Mass Spectrometry.

机构信息

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry , Jilin University , Changchun 130012 , P. R. China.

Jiangxi Key Laboratory for Mass Spectrometry and Instrumentation , East China University of Technology , Nanchang 330013 , P. R. China.

出版信息

Anal Chem. 2018 Oct 16;90(20):12101-12107. doi: 10.1021/acs.analchem.8b03022. Epub 2018 Oct 4.

Abstract

Rapid analysis of phosphopeptides and phospholipids in biological matrixes is of significant interest in multiple disciplines of life sciences. Herein, trace phospholipids in human plasma, whole blood, and undiluted human urine as well as phosphopeptides in protein digest were selectively captured on a homemade array of TiO nanowires for sensitive characterization by internal extractive electrospray ionization mass spectrometry (TiO-iEESI-MS). Sequential release of captured chemicals from TiO array was achieved by tuning pH of the extraction solvent. A single sample analysis, including sample loading, chemical extraction and MS detection, was accomplished within 3 min. As far as the quantification of phospholipids, acceptable linearity ( R ≥ 0.9985) and relative standard deviations (RSDs ≤ 8.9%) were obtained within the range of 0.1-500 μg L for LysoPC(14:0) and LysoPC(16:0) in raw urine samples. Limit of detection (LOD) ≤ 0.025 μg L and recovery rates of 94.8-101.6% were obtained for these phospholipids. As far as the quantification of phosphopeptides, R ≥ 0.9994 and RSDs ≤ 9.2% within the range of 0.3-200 μg L were obtained for two phosphopeptides in nonphosphopeptides mixtures. LODs ≤ 0.09 μg L and recovery rates of 83.4-107.0% were obtained for these phosphopeptides. On the basis of the orthogonal partial least-squares discriminant analysis, TiO-iEESI-MS patterns from the blood of 46 patients with ovarian cancer were confidently discriminated from the MS patterns of 46 healthy volunteers. Our results indicate the strong potential of TiO-iEESI-MS approach for the selective detection of trace phosphopeptides and phospholipids in various biological matrixes with high sensitivity, high specificity, low sample consumption, and high throughput.

摘要

在生命科学的多个领域中,快速分析生物基质中的磷酸肽和磷脂具有重要意义。在此,通过自制的 TiO 纳米线阵列,对人血浆、全血和未稀释的人尿中的痕量磷脂以及蛋白质消化物中的磷酸肽进行了选择性捕获,然后通过内萃取电喷雾电离质谱(TiO-iEESI-MS)进行灵敏表征。通过调节提取溶剂的 pH 值,实现了从 TiO 阵列上捕获的化学物质的顺序释放。在 3 分钟内完成了单个样品的分析,包括样品加载、化学提取和 MS 检测。就磷脂的定量而言,在原始尿液样品中,LysoPC(14:0)和 LysoPC(16:0)的线性范围为 0.1-500 μg L 时,得到了可接受的线性(R≥0.9985)和相对标准偏差(RSDs≤8.9%)。对于这些磷脂,LOD≤0.025μg L,回收率为 94.8-101.6%。就磷酸肽的定量而言,在非磷酸肽混合物中,两种磷酸肽的线性范围为 0.3-200μg L 时,得到了 R≥0.9994 和 RSDs≤9.2%。对于这些磷酸肽,LOD≤0.09μg L,回收率为 83.4-107.0%。基于正交偏最小二乘判别分析,46 例卵巢癌患者血液的 TiO-iEESI-MS 图谱与 46 例健康志愿者的 MS 图谱有明显区别。研究结果表明,TiO-iEESI-MS 方法具有选择性好、灵敏度高、特异性强、样品消耗少、高通量等特点,有望用于各种生物基质中痕量磷酸肽和磷脂的检测。

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