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On-chip Detection of Single Vesicle Release from Neuroblastoma Cells using Monolithic CMOS Bioelectronics

机译:使用单片CMOS生物电子技术对神经母细胞瘤细胞单囊泡释放进行芯片检测

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Neuroblastoma cells are often used as a cell model to study Parkinson's disease, which causes reduced dopamine release in substantia nigra, the midbrain that controls movements. In this paper, we developed a 1024-ch monolithic CMOS sensor array that has the spatiotemporal resolution as well as low-noise performance to monitor single vesicle release of dopamine from neuroblastoma cells. The CMOS device integrates 1024 on-chip electrodes with an individual size of 15 μm × 15 μm and 1024 transimpedance amplifiers for each electrode, which are each capable of measuring sub-pA current. Thus, this device can be used to study the detailed molecular dynamics of dopamine secretion at single vesicle resolution.
机译:神经母细胞瘤细胞通常被用作研究帕金森氏病的细胞模型,该病会导致黑质(控制运动的中脑)中的多巴胺释放减少。在本文中,我们开发了一种1024通道的单片CMOS传感器阵列,该阵列具有时空分辨率和低噪声性能,可监测神经母细胞瘤细胞中多巴胺的单囊泡释放。 CMOS器件集成了1024个片上电极,每个电极的尺寸分别为15μm×15μm,每个电极上有1024个跨阻放大器,每个放大器都能够测量亚pA电流。因此,该装置可用于研究单囊泡分辨率下多巴胺分泌的详细分子动力学。

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