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基于基质辅助激光解吸/电离四极离子阱飞行时间成像质谱显微镜和一种新的相对暴露方法的药代动力学研究:以鼠靶组织中的奥曲肽为例。

Pharmacokinetic study based on a matrix-assisted laser desorption/ionization quadrupole ion trap time-of-flight imaging mass microscope combined with a novel relative exposure approach: A case of octreotide in mouse target tissues.

机构信息

Key Lab of Drug Metabolism & Pharmacokinetics, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Tongjiaxiang 24, Nanjing 210009, PR China.

Shimadzu China Mass Spectrometry Center, No. 16 Chao Yang Men Wai Street, Chaoyang District, Beijing 100020, PR China.

出版信息

Anal Chim Acta. 2017 Feb 1;952:71-80. doi: 10.1016/j.aca.2016.11.056. Epub 2016 Dec 3.

Abstract

Application of imaging mass spectrometry in drug pharmacokinetics remains challenging due to its weak quantitative capability. Herein, an imaging mass microscope (iMScope), equipped with an optical microscope, an atmospheric pressure ion-source chamber for matrix-assisted laser desorption/ionization (AP-MALDI) and a hybrid quadrupole ion trap time-of-flight (QIT-TOF) analyzer, was first validated and applied to visualize drug disposition in vivo. The distribution and elimination rate of the therapeutic peptide octreotide, a long-acting analogue of the natural hormone somatostatin, was first calculated based on the data determined by iMScope system combining a novel relative exposure strategy. Microspotted pixel-to-pixel quantitative iMScope provided a relative amount of octreotide presented in a thin stomach/intestinal section while preserving its original spatial distribution. The images of dosed mouse stomach clearly demonstrated the transport process of octreotide from the mucosal layer to the muscle side. More importantly, octreotide was found to eliminate from the intestines rapidly, the absorption peak time (T) appeared at 40 min and the half-life time (t) was calculated as 37.7 min according to the elimination curves. Comparisons to the LC-MS/MS data adequately indicated that the quantification approach and methodology based on the iMScope was reliable and practicable for drug pharmacokinetic study.

摘要

由于成像质谱的定量能力较弱,其在药物药代动力学中的应用仍然具有挑战性。在此,我们首次验证并应用一种配备有光学显微镜、大气压基质辅助激光解吸/电离(AP-MALDI)离子源室和混合四极杆离子阱飞行时间(QIT-TOF)分析器的成像质谱显微镜(iMScope),来可视化体内药物分布。基于 iMScope 系统结合一种新颖的相对暴露策略所确定的数据,首次计算了治疗性肽奥曲肽(一种天然激素生长抑素的长效类似物)的分布和消除率。微斑点像素到像素定量 iMScope 提供了在薄的胃/肠段中呈现的奥曲肽的相对量,同时保留了其原始的空间分布。给药小鼠胃的图像清楚地显示了奥曲肽从黏膜层向肌肉侧的转运过程。更重要的是,奥曲肽从肠道中迅速消除,根据消除曲线,吸收峰时间(T)出现在 40 分钟,半衰期(t)计算为 37.7 分钟。与 LC-MS/MS 数据的比较充分表明,基于 iMScope 的定量方法和方法对于药物药代动力学研究是可靠和可行的。

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