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Tailoring fast-scan cyclic voltammetry for tonic dopamine concentration measurement

机译:量身定制的快速扫描循环伏安法测定补品多巴胺浓度

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Fast-scan cyclic voltammetry (FSCV) with background subtraction method has been widely used for detecting neurotransmitters in the brain. The most common application of FSCV is measuring phasic change of dopamine (DA) in the brain evoked by an external stimulus. The background subtraction method has greatly improved FSCV application to the neuroscience field, however, tonic dopamine concentration which is as vital as phasic change cannot be measured because the background is subtracted. In this study, we developed a tailoring FSCV technique which can manipulate background current by modifying the waveform voltage point. By using this technique, the last background current generated by last waveform in multiple pulses is tailored to the front background current. As a result, background current is cancelled out by subtracting the front voltammogram and tailored (last) voltammogram. On the other hand, DA oxidation/reduction pattern remained between front and last voltammogram, so that, tailoring FSCV can detect tonic DA concentration without background subtraction method. The tailoring technique is evaluated by comparing with commercialized enzyme-linked immunosorbent assay (ELISA) kits. By measuring endogenously released DA from DA cell, tailoring method showed significant correlation with ELISA result.
机译:具有背景减法的快速扫描循环伏安法(FSCV)已被广泛用于检测大脑中的神经递质。 FSCV的最常见应用是测量外部刺激引起的大脑中多巴胺(DA)的相变。背景减法大大改善了FSCV在神经科学领域的应用,但是,由于减去了背景,因此无法测量与相变同样重要的补品多巴胺浓度。在这项研究中,我们开发了一种量身定制的FSCV技术,该技术可以通过修改波形电压点来控制背景电流。通过使用此技术,可以将多个脉冲中的最后一个波形生成的最后一个背景电流调整为适合前面的背景电流。结果,通过减去前伏安图和定制(最后)伏安图来抵消背景电流。另一方面,DA的氧化/还原模式保留在前后伏安图之间,因此,量身定制的FSCV无需背景扣除方法即可检测补品DA的浓度。通过与商业化的酶联免疫吸附测定(ELISA)试剂盒进行比较来评估定制技术。通过测量DA细胞内源性释放的DA,剪裁方法与ELISA结果显示出显着的相关性。

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