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首页> 外文期刊>Analytical chemistry >Electrodeposited Gold on Carbon-Fiber Microelectrodes for Enhancing Amperometric Detection of Dopamine Release from Pheochromocytoma Cells
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Electrodeposited Gold on Carbon-Fiber Microelectrodes for Enhancing Amperometric Detection of Dopamine Release from Pheochromocytoma Cells

机译:碳纤维微电极上的电沉积金,用于增强从嗜铬细胞瘤细胞的多巴胺释放的凹凸检测

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摘要

Exocytosis is an ultrafast cellular process which facilitates neuron-neuron communication in the brain. Microelectrode electro-chemistry has been an essential tool for measuring fast exocytosis events with high temporal resolution and high sensitivity. Due to carbon fiber's irreproducible and inhomogeneous surface conditions, however, it is often desirable to develop simple and reproducible modification schemes to enhance a microelectrode's analytical performance for single-cell analysis. Here we present carbon-fiber microelectrodes (CFEs) modified with a thin film of electrodeposited gold for the detection of exocytosis from rat pheochromocytoma cells (PC12), a model cell line for neurosecretion. These new probes are made by a novel voltage-pulsing deposition procedure and demonstrate improved electron-transfer characteristics for catecholamine oxidation, and their fabrication is tractable for many different probe designs. When we applied the probes to the detection of catecholamine release, we found that they outperformed unmodified CFEs. Further, the improved performance was conserved at cells incubated with L-DOPA (L-3,4-dihydroxyphenylalanine), a precursor to dopamine that increases the quantal size of the release events. Future use of this method may allow nanoelectrodes to be modified for highly sensitive detection of exocytosis from chemical synapses.
机译:外尿精是一种超快细胞过程,其促进了大脑中的神经元神经元通信。微电极电化学是一种用于测量具有高颞率分辨率和高灵敏度的快速卵尿量事件的必要工具。然而,由于碳纤维的IRROoDucible和不均匀的表面条件,通常希望开发简单和可重复的修饰方案,以增强微电极的单细胞分析的分析性能。在这里,我们呈现碳纤维微电极(CFE)用电沉积金的薄膜进行修饰,用于检测来自大鼠嗜铬细胞瘤细胞(PC12)的外毒性,是神经精神分泌的模型细胞系。这些新探针由新型电压 - 脉冲沉积过程进行,并表明了用于儿茶酚胺氧化的改善的电子传递特性,并且它们的制造对于许多不同的探针设计而言。当我们将探针施加到检测到儿茶酚胺释放时,我们发现它们优于未经修改的CFE。此外,在与L-DOPA(L-3,4-二羟基苯基丙氨酸)温育的细胞中保守改善的性能,使多巴胺的前体增加了释放事件的量子尺寸。未来使用该方法可以允许修饰纳米电极以用于从化学突触中进行高敏感的卵尿量检测。

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