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Microelectrochemical visualization of oxygen consumption of single living cells

机译:单一活细胞氧气消耗的微电化学可视化

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The detection of cellular respiration activity is important for the assessment of the status of a biological cell. Due to its non-invasive character and high spatial resolution scanning electrochemical microscopy (SECM) is a powerful tool for single cell measurements. Common limitations of respiration studies performed by SECM are discussed and strategies provided to further adapt SECM detection schemes to the specific requirements for the investigation of single cell respiration. In particular the combination of a potential pulse technique in the redox competition mode of SECM with a shearforce-based constant-distance positioning of the SECM tip is proposed for characterising the impact of the tip reaction during SECM imaging. The adjustment of the driving force of the tip reaction and the selection of the time for data acquisition after applying the potential pulse allowed a successful visualization of cell respiration activity.
机译:检测细胞呼吸活动对于评估生物细胞的状态是重要的。由于其非侵入性特征和高空间分辨率扫描电化学显微镜(SECM)是单电池测量的强大工具。讨论了SECM进行的呼吸研究的常见局限性,并提供了进一步调整SECM检测方案的策略,以对单细胞呼吸调查的具体要求。特别地,提出了SECM的氧化还原竞争模式中的潜在脉冲技术的组合,其具有SECM尖端的SECM尖端的基于SECM的恒定距离定位,以表征SECM成像期间尖端反应的影响。调节尖端反应的驱动力和施加电位脉冲后的数据采集的时间选择允许成功可视化细胞呼吸活动。

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