Zheng Longfang, Zhao Xian-En, Zhu Shuyun, Tao Yanduo, Ji Wenhua, Geng Yanling, Wang Xiao, Chen Guang, You Jinmao
Shandong Provincial Key Laboratory of Life-Organic Analysis & Key Laboratory of Pharmaceutical Intermediates and Analysis of Natural Medicine, College of Chemistry and Chemical Engineering, Qufu Normal University, Qufu 273165, Shandong, PR China.
Shandong Provincial Key Laboratory of Life-Organic Analysis & Key Laboratory of Pharmaceutical Intermediates and Analysis of Natural Medicine, College of Chemistry and Chemical Engineering, Qufu Normal University, Qufu 273165, Shandong, PR China; Key Laboratory of TCM Quality Control Technology, Shandong Analysis and Test Center, Shandong Academy of Sciences, 19 Keyuan Street, Jinan 250014, Shandong, PR China; Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810001, Qinghai, PR China.
J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Jun 1;1054:64-72. doi: 10.1016/j.jchromb.2017.03.039. Epub 2017 Apr 10.
In this work, for the first time, a new hyphenated technique of stable isotope-labeling derivatization-ultrasound-assisted dispersive liquid-liquid microextraction has been developed for the simultaneous determination of monoamine neurotransmitters (MANTs) and their biosynthesis precursors and metabolites. The developed method was based on ultra high performance liquid chromatography tandem mass spectrometry detection using multiple-reaction monitoring mode. A pair of mass spectrometry sensitizing reagents, d-10-methyl-acridone-2-sulfonyl chloride and d-10-methyl-acridone-2-sulfonyl chloride, as stable isotope probes was utilized to facilely label neurotransmitters, respectively. The heavy labeled MANTs standards were prepared and used as internal standards for quantification to minimize the matrix effects in mass spectrometry analysis. Low toxic bromobenzene (extractant) and acetonitrile (dispersant) were utilized in microextraction procedure. Under the optimized conditions, good linearity was observed with the limits of detection (S/N>3) and limits of quantification (S/N>10) in the range of 0.002-0.010 and 0.015-0.040nmol/L, respectively. Meanwhile, it also brought acceptable precision (4.2-8.8%, peak area RSDs %) and accuracy (recovery, 96.9-104.1%) results. This method was successfully applied to the simultaneous determination of monoamine neurotransmitters and their biosynthesis precursors and metabolites in rat brain microdialysates of Parkinson's disease and normal rats. This provided a new method for the neurotransmitters related studies in the future.
在本研究中,首次开发了一种新的联用技术——稳定同位素标记衍生化-超声辅助分散液液微萃取,用于同时测定单胺类神经递质(MANTs)及其生物合成前体和代谢产物。所开发的方法基于超高效液相色谱串联质谱检测,采用多反应监测模式。使用一对质谱增敏试剂,即d-10-甲基-吖啶酮-2-磺酰氯和d-10-甲基-吖啶酮-2-磺酰氯,作为稳定同位素探针分别对神经递质进行简便标记。制备了重标记的MANTs标准品并用作定量内标,以尽量减少质谱分析中的基质效应。在微萃取过程中使用了低毒的溴苯(萃取剂)和乙腈(分散剂)。在优化条件下,线性关系良好,检测限(S/N>3)和定量限(S/N>10)分别在0.002 - 0.010和0.015 - 0.040 nmol/L范围内。同时,该方法还获得了可接受的精密度(4.2 - 8.8%,峰面积相对标准偏差)和准确度(回收率,96.9 - 104.1%)结果。该方法成功应用于帕金森病大鼠和正常大鼠脑微透析液中单胺类神经递质及其生物合成前体和代谢产物的同时测定。这为未来神经递质相关研究提供了一种新方法。