Lu Zhiwei, Wang Qing, Wang Meiling, Fu Shuang, Zhang Qingqing, Zhang Zhixin, Zhao Huizhen, Liu Yuehong, Huang Zhenhai, Xie Ziye, Yu Honghong, Gao Xiaoyan
School of Chinese Pharmacy, Beijing University of Chinese Medicine, South of Wangjing Middle Ring Road, Chaoyang District, Beijing 100102, PR China.
J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Apr 15;1051:108-117. doi: 10.1016/j.jchromb.2017.03.002. Epub 2017 Mar 12.
Modified nucleosides, metabolites of RNA, are potential biomarkers of cancer before the appearance of morphological abnormalities. It is of great significance to comprehensively detect and identify nucleosides in human urine for discovery of cancer biomarkers. However, the lower abundance, the greater polarity and the matrix effects make it difficult to detect urinary nucleosides. In this paper, an integrated method consisted of sample preparation followed by ultraperformance liquid chromatography quadrupole time-of-flight mass spectrometry (UPLC Q-TOF/MS) detection and primary identification, then ultra-high performance liquid chromatography coupled with hybrid triple quadrupole linear ion trap mass spectrometer (UHPLC Q-Trap/MS) further identification and validation were introduced. Firstly, to enrich the nucleosides and eliminate the urine matrix effects, different sorbent materials of solid phase extraction (SPE) and the elution conditions were screened. Secondly, UPLC Q-TOF/MS was used to acquire mass data in MS mode. The structural formulas of nucleosides in urine sample were primarily identified according to retention time, accurate mass precursor ions and fragment ions from in-house database and online database. Thirdly, the preliminary identified nucleoside structures lacking of characteristic fragment ions were verified by UHPLC Q-Trap/MS in multiple reaction monitoring trigger enhanced product ion scan (MRM-EPI) and neutral loss scan (NL). At last, phenylboronic acid (PBA)-based SPE was utilized due to its higher MS signal and weaker matrix effects under optimized extraction conditions. Fifty-five nucleosides were primarily identified by UPLC Q-TOF/MS, among which 50 nucleosides were confirmed by UHPLC Q-Trap/MS. Five nucleosides, namely 4',5'-didehydro-5'-deoxyadenosine, 4',5'-didehydro-5'-deoxyinosine, isonicotinamide riboside, peroxywybutosine and hydroxywybutosine, were found from urine for the first time. The results will expand the Human Metabolome Database (HMDB).
修饰核苷作为RNA的代谢产物,是癌症在形态学异常出现之前的潜在生物标志物。全面检测和鉴定人尿液中的核苷对于发现癌症生物标志物具有重要意义。然而,核苷丰度较低、极性较大以及基质效应使得尿液核苷的检测颇具难度。本文介绍了一种综合方法,该方法包括样品制备,随后进行超高效液相色谱四极杆飞行时间质谱(UPLC Q-TOF/MS)检测和初步鉴定,然后使用超高效液相色谱与混合三重四极杆线性离子阱质谱仪(UHPLC Q-Trap/MS)进行进一步鉴定和验证。首先,为了富集核苷并消除尿液基质效应,对不同的固相萃取(SPE)吸附剂材料和洗脱条件进行了筛选。其次,使用UPLC Q-TOF/MS在质谱模式下获取质量数据。根据保留时间、精确质量的前体离子和来自内部数据库及在线数据库的碎片离子,对尿液样品中的核苷结构式进行初步鉴定。第三,通过UHPLC Q-Trap/MS在多反应监测触发增强产物离子扫描(MRM-EPI)和中性丢失扫描(NL)模式下,对缺乏特征碎片离子的初步鉴定核苷结构进行验证。最后,在优化的萃取条件下,由于基于苯硼酸(PBA)的SPE具有较高的质谱信号和较弱的基质效应,因此被采用。通过UPLC Q-TOF/MS初步鉴定出55种核苷,其中50种核苷经UHPLC Q-Trap/MS确认。首次从尿液中发现了5种核苷,即4',5'-二脱氢-5'-脱氧腺苷、4',5'-二脱氢-5'-脱氧肌苷、异烟酰胺核糖核苷、过氧怀丁苷和羟基怀丁苷。这些结果将扩充人类代谢组数据库(HMDB)。