Electrochemical methods for monitoring neurotransmitter dynamics in vitro: from theory to experiments

C. Anastassiou, B. Patel, K. Parker, D. O’Hare
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Abstract

Electrochemical monitoring of neurotransmitter signaling molecules, i.e. neurotransmitters, has been often used for various biological investigations involving physiological or pathological states. In this work, we introduce alternatives to conventional electrochemical bio-monitoring and study three important neurotransmitters, dopamine, serotonin and noradrenalin, in vitro using an electrochemical technique, AC voltammetry, in combination with the Hilbert transform. We show how this method overcomes the two major difficulties of electrochemical bio-sensing: capacitance influence and the inherently nonlinear behavior of electron-transfer. We illustrate how such novel methods enhance the quantity and the quality of the biological information extracted from electrochemical measurements. This study has not only implications in general biological monitoring methodologies but also in software and hardware design and micro-fabrication
体外监测神经递质动力学的电化学方法:从理论到实验
电化学监测神经递质信号分子,即神经递质,经常用于涉及生理或病理状态的各种生物学研究。在这项工作中,我们介绍了传统电化学生物监测的替代方案,并利用交流伏安法结合希尔伯特变换,在体外研究了三种重要的神经递质,多巴胺,血清素和去甲肾上腺素。我们展示了这种方法如何克服电化学生物传感的两个主要困难:电容影响和电子转移固有的非线性行为。我们说明了这种新方法如何提高从电化学测量中提取的生物信息的数量和质量。这项研究不仅对一般的生物监测方法有影响,而且对软硬件设计和微制造也有影响
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