神经肽的质谱测定:从鉴定到定量。

Eduardo A De La Toba, Sara E Bell, Elena V Romanova, Jonathan V Sweedler
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引用次数: 2

摘要

神经肽(NPs)是一类独特的神经元信号分子,参与多种生理过程和疾病。NPs的定量测量提供了关于这些分子如何在多种神经、代谢和精神疾病中受到差异调节的有价值的信息。质谱(MS)已经发展成为一种强大的技术,用于测量复杂生物组织和单个细胞中痕量NPs的水平,使用靶向和探索性方法。测量NPs存在固有的挑战,包括其广泛的内源性浓度范围,运输和死后降解,复杂的样品矩阵,以及准确的NP定量所需的MS数据的统计处理。这篇综述重点介绍了为解决这些挑战而开发的技术,并概述了基于质谱的神经元神经元定量测量方法,包括用于高通量分析的分离方法、用于空间测量的质谱成像和用于单个神经元神经元神经元神经元定量的方法。
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Mass Spectrometry Measurements of Neuropeptides: From Identification to Quantitation.

Neuropeptides (NPs), a unique class of neuronal signaling molecules, participate in a variety of physiological processes and diseases. Quantitative measurements of NPs provide valuable information regarding how these molecules are differentially regulated in a multitude of neurological, metabolic, and mental disorders. Mass spectrometry (MS) has evolved to become a powerful technique for measuring trace levels of NPs in complex biological tissues and individual cells using both targeted and exploratory approaches. There are inherent challenges to measuring NPs, including their wide endogenous concentration range, transport and postmortem degradation, complex sample matrices, and statistical processing of MS data required for accurate NP quantitation. This review highlights techniques developed to address these challenges and presents an overview of quantitative MS-based measurement approaches for NPs, including the incorporation of separation methods for high-throughput analysis, MS imaging for spatial measurements, and methods for NP quantitation in single neurons.

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