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Comparison study of live cells by atomic force microscopy,confocal microscopy,and scanning electrochemical microscopy

机译:原子力显微镜,共聚焦显微镜和扫描电化学显微镜对活细胞的比较研究

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In this report,three kinds of scanning probe microscopy techniques,atomic force microscopy(AFM),confocal microscopy(CM),and scanning electrochemical microscopy(SECM),were used to study live cells in the physiological environment.Two model cell lines,CV-1 and COS-7,were studied.Time-lapse images were obtained with both contact and tapping mode AFM techniques.Cells were more easily scratched or moved by contact mode AFM than by tapping mode AFM.Detailed surface structures such as filamentous structures on the cell membrane can be obtained and easily discerned with tapping mode AFM.The toxicity of ferrocenemethanol(Fc)on live cells was studied by CM in reflection mode by recording the time-lapse images of controlled live cells and live cells with different Fc concentrations.No significant change in the morphology of cells was caused by Fc.Cells were imaged by SECM with Fc as the mediator at a biased potential of 0.35 V(vs.Ag/AgCl with a saturated KC1 solution).Cells did not change visibly within 1 h,which indicated that SECM was a noninvasive technique and thus has a unique advantage for the study of soft cells,since the electrode scanned above the cells instead of in contact with them.Reactive oxygen species(ROS)generated by the cells were detected and images based on these chemical species were obtained.It is demonstrated that SECM can provide not only the topographical images but also the images related to the chemical or biochemical species released by the live cells.
机译:在本报告中,三种扫描探针显微镜技术,原子力显微镜(AFM),锥孔显微镜(CM)和扫描电化学显微镜(SECM)被用于研究生理环境中的活细胞。两种模型细胞系,CV研究了-1和COS-7。通过接触和攻丝模式AFM技术获得了延时图像。接触模式AFM比攻丝模式AFM更容易刮擦或移动细胞。二甲基二茂铁(Fc)对活细胞的毒性作用是通过CM在反射模式下通过记录受控的活细胞和不同Fc浓度的活细胞的延时图像来研究的。 Fc不会引起细胞形态的显着变化。以Fc为介体的SECM以0.35 V的偏压(vs.Ag/AgCl的饱和KC1溶液)对细胞进行成像。在1 h内,这表明SECM是一种非侵入性技术,因此对软细胞的研究具有独特的优势,因为电极扫描到细胞上方而不是与细胞接触。细胞产生的活性氧(ROS)是检测并获得基于这些化学物种的图像。证明了SECM不仅可以提供地形图像,而且可以提供与活细胞释放的化学或生化物种相关的图像。

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