Zhao Yang, Xue Qian, Wang Man, Meng Bo, Jiang You, Zhai Rui, Zhang Yong, Dai Xinhua, Fang Xiang
Center for Advanced Measurement Science, National Institute of Metrology, Beijing 100029, China.
The Department of Scientific Research Management, Suining Central Hospital, Suining 629000, China.
J Proteome Res. 2023 Apr 7;22(4):1009-1023. doi: 10.1021/acs.jproteome.3c00102. Epub 2023 Mar 18.
Mass spectrometry (MS)-based blood proteomics is a crucial research focus in identifying disease biomarkers. Blood serum or plasma is the most commonly used sample for such analysis; however, it presents challenges due to the complexity and dynamic range of protein abundance. Despite these difficulties, the development of high-resolution MS instruments has made comprehensive investigation of blood proteomics possible. The evolution of time-of-flight (TOF) or Orbitrap MS instruments has played a significant role in the field of blood proteomics. These instruments are now among the most prominent techniques for blood proteomics due to their sensitivity, selectivity, fast response, and stability. For optimal results, it is necessary to eliminate high-abundance proteins from the blood sample, to maximize the depth coverage of the blood proteomics analysis. This can be achieved through various methods, including commercial kits, chemically synthesized materials, and MS technologies. This paper reviews recent advancements in MS technology and its remarkable applications in biomarker discovery, particularly in the areas of cancer and COVID-19 studies.
基于质谱(MS)的血液蛋白质组学是识别疾病生物标志物的关键研究重点。血清或血浆是此类分析最常用的样本;然而,由于蛋白质丰度的复杂性和动态范围,它带来了挑战。尽管存在这些困难,但高分辨率MS仪器的发展使血液蛋白质组学的全面研究成为可能。飞行时间(TOF)或轨道阱MS仪器的发展在血液蛋白质组学领域发挥了重要作用。由于其灵敏度、选择性、快速响应和稳定性,这些仪器现在是血液蛋白质组学最突出的技术之一。为了获得最佳结果,有必要从血液样本中去除高丰度蛋白质,以最大限度地扩大血液蛋白质组学分析的深度覆盖范围。这可以通过多种方法实现,包括商业试剂盒、化学合成材料和MS技术。本文综述了MS技术的最新进展及其在生物标志物发现中的显著应用,特别是在癌症和COVID-19研究领域。