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Neurotransmitter measurement with a fiber optic probe using pulsed ultraviolet resonance Raman spectroscopy

机译:使用脉冲紫外共振拉曼光谱仪的光纤探头测量神经递质

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Abstract: Many techniques have been developed to investigate the chemistry associated with brain activity. These techniques generally fall into two categories: fast techniques with species restricted sensitivity and slow techniques with generally unrestricted species sensitivity. Therefore, a need exists for a fast non-invasive technique sensitive to a wide array of biologically relevant compounds in order to measure chemical brain events in real time. The work presented here describes the progress made toward the development of a novel neurotransmitter probe. A fiber-optic linked Raman and tunable ultraviolet resonance Raman system was assembled with custom designed optical fiber probes. Probes of several different geometries were constructed and their working curves obtained in aqueous mixtures of methyl orange and potassium nitrate to determine the best probe configuration given particular sample characteristics. Using this system, the ultraviolet resonance Raman spectra of some neurotransmitters were measured with a fiber-optic probe and are reported here for the first time. The probe has also been used to measure neurotransmitter secretions obtained from depolarized rat pheochromocytoma cells. !8
机译:摘要:已经开发出许多技术来研究与脑活动有关的化学反应。这些技术通常分为两类:具有限制物种敏感性的快速技术和具有不受限制物种敏感性的慢速技术。因此,需要一种对多种生物学相关化合物敏感的快速非侵入性技术,以便实时测量化学脑事件。本文介绍的工作描述了新型神经递质探针的开发进展。光纤连接的拉曼光谱仪和可调谐的紫外线共振拉曼系统与定制设计的光纤探头组装在一起。构造了几种不同几何形状的探针,并在甲基橙和硝酸钾的水性混合物中获得了它们的工作曲线,以确定在特定样品特征下的最佳探针构型。使用该系统,用光纤探针测量了某些神经递质的紫外线共振拉曼光谱,并在此首次报道。该探针还已用于测量从去极化的大鼠嗜铬细胞瘤细胞获得的神经递质分泌。 !8

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