Institute of Bioelectronics (PGI-8/ICS-8) and JARA--Fundamentals of Future Information Technology, Forschungszentrum Jülich, 52425 Jülich, Germany.
Anal Chem. 2013 Jun 4;85(11):5483-90. doi: 10.1021/ac4006183. Epub 2013 May 17.
Real-time investigations of neurotransmitter release provide a direct insight on the mechanisms involved in synaptic communication. Carbon fiber microelectrodes are state-of-the-art tools for electrochemical measurements of single vesicle neurotransmitter release. Yet, they lack high-throughput capabilities that are required for collecting robust statistically significant data across multiple samples. Here, we present a chip-based recording system enabling parallel in vitro measurements of individual neurotransmitter release events from cells, cultured directly on planar multielectrode arrays. The applicability of this cell-based platform to pharmacological screening is demonstrated by resolving minute concentration-dependent effects of the dopamine reuptake inhibitor nomifensine on recorded single-vesicle release events from PC12 cells. The experimental results, showing an increased half-time of the recorded events, are complemented by an analytical model for the verification of drug action.
实时研究神经递质释放为突触通讯所涉及的机制提供了直接的见解。碳纤维微电极是电化学测量单个囊泡神经递质释放的最新工具。然而,它们缺乏高通量能力,而这种能力是在多个样本中收集稳健的具有统计学意义的数据所必需的。在这里,我们提出了一种基于芯片的记录系统,能够在体外从直接培养在平面多电极阵列上的细胞中并行测量单个神经递质释放事件。通过解析多巴胺再摄取抑制剂诺米芬辛对 PC12 细胞记录的单个囊泡释放事件的微小浓度依赖性影响,证明了这种基于细胞的平台在药物筛选中的适用性。实验结果显示,记录事件的半衰期增加,实验结果通过分析模型得到了补充,以验证药物的作用。