首页> 外文OA文献 >Parallel recording of neurotransmitters release from chromaffin cells using a 10x10 CMOS IC potentiostat array with on-chip working electrodes.
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Parallel recording of neurotransmitters release from chromaffin cells using a 10x10 CMOS IC potentiostat array with on-chip working electrodes.

机译:使用具有片上工作电极的10x10 CmOs IC恒电位仪阵列,并行记录神经递质从嗜铬细胞释放。

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摘要

Neurotransmitter release is modulated by many drugs and molecular manipulations. We present an active CMOS-based electrochemical biosensor array with high throughput capability (100 electrodes) for on-chip amperometric measurement of neurotransmitter release. The high-throughput of the biosensor array will accelerate the data collection needed to determine statistical significance of changes produced under varying conditions, from several weeks to a few hours. The biosensor is designed and fabricated using a combination of CMOS integrated circuit (IC) technology and a photolithography process to incorporate platinum working electrodes on-chip. We demonstrate the operation of an electrode array with integrated high-gain potentiostats and output time-division multiplexing with minimum dead time for readout. The on-chip working electrodes are patterned by conformal deposition of Pt and lift-off photolithography. The conformal deposition method protects the underlying electronic circuits from contact with the electrolyte that covers the electrode array during measurement. The biosensor was validated by simultaneous measurement of amperometric currents from 100 electrodes in response to dopamine injection, which revealed the time course of dopamine diffusion along the surface of the biosensor array. The biosensor simultaneously recorded neurotransmitter release successfully from multiple individual living chromaffin cells. The biosensor was capable of resolving small and fast amperometric spikes reporting release from individual vesicle secretions. We anticipate that this device will accelerate the characterization of the modulation of neurotransmitter secretion from neuronal and endocrine cells by pharmacological and molecular manipulations of the cells.
机译:神经递质的释放受许多药物和分子操纵的调节。我们提出了具有高吞吐能力(100个电极)的基于有源CMOS的电化学生物传感器阵列,用于神经递质释放的片上安培测量。生物传感器阵列的高通量将加速确定在不同条件下(从几周到几小时)产生的变化的统计显着性所需的数据收集。生物传感器是结合CMOS集成电路(IC)技术和光刻工艺设计和制造的,以将铂工作电极集成在芯片上。我们演示了具有集成的高增益恒电位仪和输出时分多路复用的电极阵列的操作,并具有最小的死区时间以进行读出。芯片上工作电极通过Pt的保形沉积和剥离光刻法进行图案化。保形沉积方法可保护下层电子电路在测量期间不与覆盖电极阵列的电解质接触。通过同时测量来自多巴胺注入的100个电极的安培电流来验证生物传感器的有效性,这揭示了多巴胺沿生物传感器阵列表面扩散的时间过程。该生物传感器同时成功地记录了多个活的嗜铬细胞的释放过程。该生物传感器能够解决报告单个小泡分泌释放的小而快速的安培峰。我们预计该设备将通过细胞的药理学和分子操作来加速神经元和内分泌细胞对神经递质分泌的调节。

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