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Visualizing Neurotransmitters and Metabolites in theCentral Nervous System by High Resolution and High Accuracy Mass SpectrometricImaging

机译:可视化大脑中的神经递质和代谢物高分辨率和高精度质谱的中枢神经系统影像学

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摘要

The spatial localization and molecular distribution of metabolites and neurotransmitters within biological organisms is of tremendous interest to neuroscientists. In comparison to conventional imaging techniques such as immunohistochemistry, matrix-assisted laser desorption/ionization (MALDI) mass spectrometric imaging (MSI) has demonstrated its unique advantage by directly localizing the distribution of a wide range of biomolecules simultaneously from a tissue specimen. Although MALDI-MSI of metabolites and neurotransmitters is hindered by numerous matrix-derived peaks, high-resolution and high-accuracy mass spectrometers (HRMS) allow differentiation of endogenous analytes from matrix peaks, unambiguously obtaining biomolecular distributions. In this study, we present MSI of metabolites and neurotransmitters in rodent and crustacean central nervous systems acquired on HRMS. Results were compared with those obtained from a medium-resolution mass spectrometer (MRMS), tandem time-of-flight instrument, to demonstrate the power and unique advantages of HRMSI and reveal how this new tool would benefit molecular imagingapplications in neuroscience.
机译:神经科学家对生物体内代谢物和神经递质的空间定位和分子分布非常感兴趣。与常规成像技术(例如免疫组织化学)相比,基质辅助激光解吸/电离(MALDI)质谱成像(MSI)通过直接从组织样本中同时定位多种生物分子的分布,证明了其独特的优势。尽管代谢物和神经递质的MALDI-MSI受到许多基质衍生峰的阻碍,但高分辨率和高精度质谱仪(HRMS)允许将内源性分析物与基质峰区分开,从而明确获得生物分子分布。在这项研究中,我们介绍了通过HRMS获得的啮齿动物和甲壳类中枢神经系统中代谢物和神经递质的MSI。将结果与通过串联飞行时间仪器中分辨率质谱仪(MRMS)获得的结果进行比较,以证明HRMSI的强大功能和独特优势,并揭示该新工具将如何使分子成像受益在神经科学中的应用。

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