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A diamond-based biosensor for the recording of neuronal activity

机译:基于钻石的生物传感器,用于记录神经元活动

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摘要

We have developed a device for recording the extracellular electrical activity of cultured neuronal networks based on a hydrogen terminated (H-terminated) conductive diamond. GT1-7 cells, a neuronal cell line showing spontaneous action potentials firing, could maintain their functional properties for days in culture when plated on the H-terminated diamond surface. The recorded extracellular electrical activity appeared in the form of well-resolved bursts of fast and slow biphasic signals with a mean duration of about 8 ms for the fast and 60 ms for the slow events. The time courses of these signals were in good agreement with those recorded by means of conventional microelectrode array (MEAs) and with the negative derivative of the action potentials intracellularly recorded with the patch clamp technique from single cells. Thus, although hydrophobic in nature, the conductive H-terminated diamond surface is able to reveal the spontaneous electrical activity of neurons mainly by capacitative coupling to the cell membrane. Having previously shown that the optical properties of H-terminated diamond allow to record cellular activity by means of fluorescent probes (Ariano, P., Baldelli, P., Carbone, E., Giardino, A., Lo Giudice, A., Lovisolo, D., Manfredotti, C., Novara, M., Sternschulte, H., Vittone, E., 2005. Diam. Relat. Mater. 14, 669-674), we now provide evidence for the feasibility of using diamond-based cellular biosensors for multiparametrical recordings of electrical activity from living cells.
机译:我们已经开发了一种用于记录基于氢封端(H端)的导电金刚石的培养的神经元网络的细胞外电活动的设备。 GT1-7细胞是一种神经元细胞系,显示出自发的动作电位,当铺在H末端的钻石表面时,可以在培养中维持其功能特性数天。记录的细胞外电活动以快速和慢速两相信号的良好分辨突发形式出现,快时事件的平均持续时间约为8毫秒,慢时事件的平均持续时间约为60毫秒。这些信号的时程与通过常规微电极阵列(MEA)记录的信号以及通过膜片钳技术从单个细胞在细胞内记录的动作电位的负导数非常一致。因此,尽管本质上是疏水的,但导电的H端接的金刚石表面能够主要通过电容性偶联至细胞膜来揭示神经元的自发电活动。先前已证明H端钻石的光学性质允许通过荧光探针记录细胞活性(Ariano,P.,Baldelli,P.,Carbone,E.,Giardino,A.,Lo Giudice,A.,Lovisolo ,D.,Manfredotti,C.,Novara,M.,Sternschulte,H.,Vittone,E.,2005年。Diam。Relat。Mater。14,669-674),我们现在提供了使用金刚石的可行性证据。基于细胞的生物传感器,用于多参数记录活细胞的电活动。

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