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Scanning electrochemical microscopy of model neurons: Imaging and real-time detection of morphological changes

机译:模型神经元的扫描电化学显微镜:形态变化的成像和实时检测

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Living PC12 cells, a model cell type for studying neuronal function, were imaged using the negative feedback mode of a scanning electrochemical microscope (SECM). Six biocompatible redox mediators were successfully identified from a large pool of candidates and were then used for imaging PC12 cells before and after exposure to nerve growth factor (NGF). When exposed to NGF, cells differentiate into a neuron phenotype by growing narrow neurites (1-2 mum wide) that can extend > 100 mum from the cell proper. We demonstrate that carbon fiber electrodes with reduced tip diameters can be used for imaging both the cell proper and these neurites. Regions of decreased current, possibly resulting from raised features not identifiable by light microscopy, are clearly evident in the SECM images. Changes in the morphology of undifferentiated PC12 cells could be detected in real time with the SECM. After exposure to hypotonic and hypertonic solutions, reversible changes in cell height of <2 μm were measured. [References: 30]
机译:使用扫描电化学显微镜(SECM)的负反馈模式对PC12活细胞(一种用于研究神经元功能的模型细胞类型)进行成像。从大量候选物中成功鉴定出六种生物相容的氧化还原介体,然后将其用于暴露于神经生长因子(NGF)之前和之后的PC12细胞成像。当暴露于NGF时,细胞会通过生长窄的神经突(1-2微米宽)而分化为神经元表型,这些神经突可从细胞自身延伸> 100微米。我们证明具有减小的尖端直径的碳纤维电极可用于成像细胞固有层和这些神经突。在SECM图像中可以清楚地看到电流降低的区域,这可能是由光学显微镜无法识别的凸起特征引起的。使用SECM可以实时检测未分化PC12细胞的形态变化。暴露于低渗和高渗溶液后,测量细胞高度<2μm的可逆变化。 [参考:30]

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