Jeong Du Won, Jung Jongjin, Kim Gook Hwa, Yang Cheol-Soo, Kim Ju Jin, Jung Sang Don, Lee Jeong-O
Department of Physics, Chonbuk National University, Chonju 561-756, Korea. Advanced Materials Division, Korea Research Institute of Chemical Technology, Daejeon 305-343, Korea.
Nanotechnology. 2015 Aug 21;26(33):335701. doi: 10.1088/0957-4484/26/33/335701. Epub 2015 Jul 29.
In this work, Cath.a-differentiated (CAD) cells were used in place of primary neuronal cells to assess the performance of vertically aligned carbon nanotubes (VACNTs) multi-electrode arrays (MEA). To fabricate high-performance MEA, VACNTs were directly grown on graphene/Pt electrodes via plasma enhanced chemical deposition technique. Here, graphene served as an intermediate layer lowering contact resistance between VACNTs and Pt electrode. In order to lower the electrode impedance and to enhance the cell adhesion, VACNTs-MEAs were treated with UV-ozone for 20 min. Impedance of VACNTs electrode at 1 kHz frequency exhibits a reasonable value (110 kΩ) for extracellular signal recording, and the signal to noise ratio the is good enough to measure low signal amplitude (15.7). Spontaneous firing events from CAD cells were successfully measured with VACNTs MEAs that were also found to be surprisingly robust toward the biological interactions.
在这项工作中,使用分化的Cath.a-differentiated(CAD)细胞代替原代神经元细胞来评估垂直排列的碳纳米管(VACNTs)多电极阵列(MEA)的性能。为了制造高性能的MEA,通过等离子体增强化学沉积技术将VACNTs直接生长在石墨烯/Pt电极上。在这里,石墨烯作为中间层降低了VACNTs与Pt电极之间的接触电阻。为了降低电极阻抗并增强细胞粘附力,将VACNTs-MEAs用紫外臭氧处理20分钟。VACNTs电极在1 kHz频率下的阻抗对于细胞外信号记录呈现出合理的值(110 kΩ),并且信噪比足以测量低信号幅度(15.7)。用VACNTs MEA成功测量了CAD细胞的自发放电事件,并且还发现其对生物相互作用具有惊人的稳健性。