Marvin Laure F, Roberts Matthew A, Fay Laurent B
Nestlé Research Center, Nestec Ltd, Vers-chez-les-Blanc, PO Box 44, 1000 Lausanne 26, Switzerland.
Clin Chim Acta. 2003 Nov;337(1-2):11-21. doi: 10.1016/j.cccn.2003.08.008.
Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-Tof-MS) has recently become a popular and versatile method to analyze macromolecules from biological origin. In this paper, we will review the application of MALDI-Tof-MS in clinical chemistry and biology. MALDI-Tof-MS is used in clinical chemistry, e.g. disease markers can be identified with MALDI-MS analysis in combination with 1-D and 2-D gel electrophoresis separations thanks to either peptide mass fingerprinting (PMF) or peptide sequence tag (PST) followed by data base searching. In microbiology, MALDI-Tof-MS is employed to analyze specific peptides or proteins directly desorbed from intact viruses, bacteria and spores. The capability to register biomarker ions in a broad m/z range, which are unique and representative for individual microorganisms, forms the basis of taxonomic identification of bacteria by MALDI-Tof-MS. Moreover, this technique can be applied to study either the resistance of bacteria to antibiotics or the antimicrobial compounds secreted by other bacterial species. More recently, the method was also successfully applied to DNA sequencing (genotyping) as well as screening for mutations. High-throughput genotyping of single-nucleotide polymorphisms has the potential to become a routine method for both laboratory and clinical applications. Moreover, posttranscriptional modifications of RNA can be analyzed by MALDI using nucleotide-specific RNAses combined with further fragmentation by post source decay (PSD).
基质辅助激光解吸/电离飞行时间质谱(MALDI-Tof-MS)最近已成为一种流行且通用的方法,用于分析生物来源的大分子。在本文中,我们将综述MALDI-Tof-MS在临床化学和生物学中的应用。MALDI-Tof-MS用于临床化学,例如,借助肽质量指纹图谱(PMF)或肽序列标签(PST)并随后进行数据库搜索,通过MALDI-MS分析结合一维和二维凝胶电泳分离,可以鉴定疾病标志物。在微生物学中,MALDI-Tof-MS用于分析直接从完整病毒、细菌和孢子中解吸的特定肽或蛋白质。在宽m/z范围内记录生物标志物离子的能力,这些离子对于单个微生物是独特且具有代表性的,构成了通过MALDI-Tof-MS对细菌进行分类鉴定的基础。此外,该技术可用于研究细菌对抗生素的抗性或其他细菌物种分泌的抗菌化合物。最近,该方法还成功应用于DNA测序(基因分型)以及突变筛选。单核苷酸多态性的高通量基因分型有可能成为实验室和临床应用的常规方法。此外,RNA的转录后修饰可以通过使用核苷酸特异性核糖核酸酶结合源后衰变(PSD)进一步裂解的MALDI进行分析。