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Polymer modified carbon fiber-microelectrodes and waveform modifications enhance neurotransmitter metabolite detection

机译:聚合物改性碳纤维微电极和波形修饰增强神经递质代谢物检测

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Carbon-fiber microelectrodes (CFMEs) have been used for several years for the detection of neurotransmitters such as dopamine. Dopamine is a fundamentally important neurotransmitter and is also metabolized at a subsecond timescale. Recently, several metabolites of dopamine have been shown to be physiologically important such as 3-methoxytyramine (3-MT), 3,4-dihydroxyphenyEacetic acid (DOPAC), and homovanillic acid (HVA). Many of these neurotransmitter metabolites are currently only detected with microdiaEysis coupled with Liquid chromatography with relatively Low temporal and spatial resolution. Current electrochemical methods such as the dopamine waveform (scanning from -0.4 to 1.3 V at 400 V s(-1)) are utilized to electrostatically repel anions such as DOPAC and promote dopamine adsorption to the surface of the electrode. Moreover, polymer coatings such as Nafion have been shown to electrostatically repel anions such as 5-hydroxyin doleacetic acid (5-HIAA). In this study, we develop novel polymer and waveform modifications for enhanced DOPAC detection. Applying the DOPAC waveform (scanning from 0 to 1.3 V at 400 V s(-1)) enhances DOPAC detection significantly because it does not include the negative holding potential of the dopamine waveform. Moreover, positively charged cationic polymers such as polyethyleneimine (PEI) allow for the preconcentration of DOPAC to the surface of the carbon fiber through an electrostatic attraction. The Limit of detection for DOPAC for PEI coated CFMEs with the DOPAC waveform applied is 58.2 +/- 2 nM as opposed to 291 +/- 10 nM for unmodified electrodes applying the dopamine waveform (n = 4). This work offers promise for the development of novel electrode materials and waveforms for the specific detection of several important biomolecules such as dopamine metabolite neurotransmitters.
机译:碳纤维微电极(CFMES)已被使用几年用于检测多巴胺等神经递质。多巴胺是一个从根本上重要的神经递质,也是在4亚级拍摄的中代谢。最近,已显示多巴胺的几种代谢物在生理学上是重要的,例如3-甲氧基葡萄酒(3-MT),3,4-二羟基酰基酸(DOPAC)和HOMOV烷酸(HVA)。目前仅使用具有相对较低的时间和空间分辨率的液相色谱偶联,目前仅检测这些神经递质代谢物中的许多代谢物。电流电化学方法如多巴胺波形(从-0.4-1.3V扫描400V s(-1))以静电返回诸如DOPAC的阴离子,并促进多巴胺吸附到电极的表面上。此外,已经显示出诸如Nafion的聚合物涂层,以静电击退诸如5-羟基甘油(5-铪)的阴离子。在这项研究中,我们开发了用于增强的DOPAC检测的新型聚合物和波形改性。施加DOPAC波形(在400V S(-1)下扫描0至1.3V),显着增强了DOPAC检测,因为它不包括多巴胺波形的负保持电位。此外,带正电荷的阳离子聚合物如聚乙烯亚胺(PEI)允许DOPAC通过静电吸引的碳纤维表面的前浓缩。具有施加的DOPAC波形的PEI涂覆CFMES的DOPAC的检测极限为58.2 +/- 2nm,而不是施加多巴胺波形的未改性电极的291 +/- 10nm(n = 4)。这项工作提供了新的电极材料和波形的承诺,用于具体检测几种重要的生物分子,如多巴胺代谢物神经递质。

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