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碳纳米管纤维电极增强活体脑组织中神经递质动态检测

Carbon nanotube yarn electrodes for enhanced detection of neurotransmitter dynamics in live brain tissue.

机构信息

Department of Chemistry and ‡Department of Materials Science Engineering, North Carolina State University , Raleigh, North Carolina 27695, United States.

出版信息

ACS Nano. 2013 Sep 24;7(9):7864-73. doi: 10.1021/nn402857u. Epub 2013 Aug 23.

Abstract

This work demonstrates the potential of nanoscale carbon electrode materials for improved detection of electroactive neurotransmitter dynamics in the brain. Individual multiwalled carbon nanotubes were synthesized via chemical vapor deposition, spun into yarns, and used in the fabrication of disk microelectrodes that were subsequently characterized using scanning electron and atomic force microscopies. The carbon nanotube yarn electrodes were coupled with fast-scan cyclic voltammetry and used to discriminately detect rapid neurotransmitter fluctuations in acute brain slices. The results demonstrate that the distinct structural and electronic properties of the nanotubes result in improved selectivity, sensitivity, and spatial resolution, as well as faster apparent electron transfer kinetics when compared to the conventional carbon-fiber microelectrodes typically used in vivo.

摘要

这项工作展示了纳米级碳电极材料在改善大脑中电活性神经递质动力学检测方面的潜力。通过化学气相沉积合成了单个多壁碳纳米管,将其纺成纱线,并用于制造盘状微电极,然后使用扫描电子显微镜和原子力显微镜对其进行了表征。将碳纳米管纱线电极与快速扫描循环伏安法相结合,用于区分检测急性脑切片中快速的神经递质波动。结果表明,与通常在体内使用的传统碳纤维微电极相比,纳米管的独特结构和电子特性导致选择性、灵敏度和空间分辨率得到提高,并且表观电子转移动力学更快。

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