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用于痕量神经肽的液相色谱-质谱分析的快速预浓缩。

Rapid preconcentration for liquid chromatography-mass spectrometry assay of trace level neuropeptides.

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

J Am Soc Mass Spectrom. 2013 Nov;24(11):1700-9. doi: 10.1007/s13361-013-0605-1. Epub 2013 Apr 17.

Abstract

Measurement of neuropeptides in the brain through in vivo microdialysis sampling provides direct correlation between neuropeptide concentration and brain function. Capillary liquid chromatography-multistage mass spectrometry (CLC-MS(n)) has proven to be effective at measuring endogenous neuropeptides in microdialysis samples. In the method, microliter samples are concentrated onto nanoliter volume packed beds before ionization and mass spectrometry analysis. The long times required for extensive preconcentration present a barrier to routine use because of the many samples that must be analyzed and instability of neuropeptides. In this study, we evaluated the capacity of 75 μm inner diameter (i.d.) capillary column packed with 10 μm reversed phase particles for increasing the throughput in CLC-MS(n) based neuropeptide measurement. Coupling a high injection flow rate for fast sample loading/desalting with a low elution flow rate to maintain detection sensitivity, this column has reduced analysis time from ∼30 min to 3.8 min for 5 μL sample, with 3 pM limit of detection (LOD) for enkephalins and 10 pM LOD for dynorphin A1-8 in 5 μL sample. The use of isotope-labeled internal standard lowered peptide signal variation to less than 5 %. This method was validated for in vivo detection of Leu and Met enkephalin with microdialysate collected from rat globus pallidus. The improvement in speed and stability makes CLC-MS(n) measurement of neuropeptides in vivo more practical.

摘要

通过体内微量透析采样测量神经肽可提供神经肽浓度与大脑功能之间的直接相关性。毛细管液相色谱-多级质谱(CLC-MS(n))已被证明可有效测量微量透析样品中的内源性神经肽。在该方法中,微升样品在离子化和质谱分析之前浓缩到纳升体积的填充床中。由于必须分析的样品数量众多且神经肽不稳定,因此广泛预浓缩所需的长时间成为常规使用的障碍。在这项研究中,我们评估了 75 μm 内径(i.d.)毛细管柱的容量,该柱用 10 μm 反相颗粒填充,用于增加基于 CLC-MS(n)的神经肽测量中的通量。通过高注入流速进行快速样品加载/脱盐,并通过低洗脱流速保持检测灵敏度,与 5 μL 样品的约 30 min 相比,该柱将分析时间从 3.8 min 缩短,5 μL 样品中的内啡肽和强啡肽 A1-8 的检测限(LOD)分别为 3 pM 和 10 pM。使用同位素标记的内标将肽信号变化降低到小于 5%。该方法已针对从大鼠苍白球收集的微透析液中亮氨酸和甲硫氨酸内啡肽的体内检测进行了验证。速度和稳定性的提高使体内 CLC-MS(n)测量神经肽更加实用。

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