Citation:
TANG Chunlan, WANG Li, CHENG Mengchun, LIU Xinxin, XIAO Hongbin. Determination of N6-(4-hydroxybenzyl) adenine riboside in rat plasma by ultra performance liquid chromatography- quadrupole time of flight mass spectrometry[J]. Chinese Journal of Chromatography,
;2015, 33(7): 699-703.
doi:
10.3724/SP.J.1123.2015.03017
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An ultra performance liquid chromatography-quadrupole time of flight mass spectrometry (UPLC-QTOF-MS) method was developed and validated for the determination of N6-(4-hydroxybenzyl) adenine riboside and its pharmacokinetics in rat plasma. The chromatographic conditions were optimized. The separation was performed on an Agilent ZORBAX SB-C18 column(150 mm×3 mm, 1.8 μm) with a gradient elution of 0.2%(v/v) formic acid aqueous solution and acetonitrile as the mobile phases at a flow rate of 0.35 mL/min. The detection was accomplished in positive mode with electrospray ionization (ESI) by UPLC-QTOF-MS, and 6-benzylamino purine was used as the internal standard (IS). The results showed that the linear range of calibration curve was 0.625-160 ng/mL for N6-(4-hydroxybenzyl) adenine riboside in rat plasma with the correlation coefficient more than 0.99. The recoveries were 88.41%-108.26%. The limit of detection was 0.1 ng/mL. The intra-day and inter-day precisions (RSDs) were less than 6%, and intra-day and inter-day accuracies (REs, RE=(measured concentration-spiked concentration)/spiked concentration×100%) were less than ±15%. The method is rapid, sensitive and accurate for the quantitation of N6-(4-hydroxybenzyl) adenine riboside, which can be used for the study of pharmacokinetics of N6-(4-hydroxybenzyl) adenine riboside.
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[1]
[1] Zheng H Z, Dong Z H, She J. Research and Application in Modernization of Chinese Medicine, Volume 1. Beijing: Academy Press (郑虎占, 董泽宏, 佘靖. 中草药现代研究与应用, 第1卷. 北京: 学苑出版社), 1997
-
[2]
[2] Sun X F, Wang W, Wang D Q, et al. China Journal of Chinese Materia Medica (孙晓芳, 王巍, 王丹巧, 等. 中国中药杂志), 2004, 29(4): 292
-
[3]
[3] Ramachandran U, Manavalan A, Sundaramurthi H, et al. Neurochem Int, 2012, 60(8): 827
-
[4]
[4] Zhang T, Cao X L. Chinese Journal of Integrative Medicine on Cardio-/Cerebrovascular Disease (张涛, 曹晓岚. 中西医结合心脑血管病杂志), 2007, 5(6): 515
-
[5]
[5] Wang L, Xiao H B, Liang X M, et al. J Sep Sci, 2007, 30(10): 1488
-
[6]
[6] Wang L, Xiao H B, Yang L, et al. J Asian Nat Prod Res, 2012, 14(5): 457
-
[7]
[7] Wang L, Xiao H B, Liang X M. Chinese Traditional and Herbal Drugs (王莉, 肖红斌, 梁鑫淼. 中草药), 2009, 40(8): 1186
-
[8]
[8] Wang Q Z. Chinese Journal of Trauma and Disability Medicine (王乾忠. 中国伤残医学), 2013, 21(11): 223
-
[9]
[9] Hu Y K, Li C Y, Shen W. Neuropathology, 2014, 34(4): 370
-
[10]
[10] Huang N K, Chern Y J, Fang J M, et al. J Nat Prod, 2007, 70(4): 571
-
[11]
[11] Zhang Y, Li M, Kang R X, et al. Pharmacol Biochem Be, 2012, 102: 450
-
[12]
[12] Lei Y J, Wang L, Cheng M C, et al. Biomed Chromatogr, 2011, 25(3): 344
-
[13]
[13] Chen X Z, Chen W Q, Wang J, et al. Chinese Journal of Chromatography (陈小珍, 陈万勤, 王瑾, 等. 色谱), 2013, 31(9): 875
-
[14]
[14] Tang C L, Wang L, Cheng M C, et al. J Chromatogr B, 2014, 973: 104
-
[15]
[15] Huang H Q, Huang X, Yu J S. Chinese Journal of Chromatography (黄会秋, 黄逊, 余惊笋. 色谱), 2015, 33(3): 323
- [16]
- [17]
- [18]
-
[1]
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