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Pick-and-Place Operation of Single Cell Using Optical and Electrical Measurements for Robust Manipulation

机译:使用光学和电气测量进行可靠操作的单电池取放操作

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A robust pick and placement operation of a single cell is necessary for efficient sample collection. Detection and manipulation of single cells requires minimum invasiveness. We report a less-invasive method for picking up and placing single cells using optical and electrical observations for robust cell manipulation. We measured the ionic current through a glass pipette during a cell capture and release operation to detect its capture. Trapping a cell on the pipette tip by suction decreased the current and allowed the detection of cell capture within 1 s. A time-series ionic current was sensitive to the location of a cell and effective at detecting a single cell. A time-series ionic current had a higher signal-to-noise ratio than time-series microscope images. Cell membrane integrity was analyzed at the different capturing and voltage conditions. Serum protein coating shows improvement of a cell release from a pipette tip. Measurement of trajectory and distance of a cell reveals that the movement depends on an ejection flow and the flow in a dish. We achieved a pick-up and placement operation for single cells that was compatible with an open-top microwell while performing observations using optical microscopy and measurements using an electrical current.
机译:要有效地收集样品,必须对单个单元进行可靠的拾取和放置操作。单个细胞的检测和操作需要最小的侵入性。我们报告了一种使用光学和电学观察方法对单个细胞进行拾取和放置的侵入性较小的方法,以进行可靠的细胞操作。我们在细胞捕获和释放操作期间通过玻璃移液管测量了离子电流,以检测其捕获。通过抽吸将细胞捕获在移液器吸头上会降低电流,并允许在1 s内检测到细胞捕获。时间序列的离子电流对细胞的位置敏感,并且对检测单个细胞有效。时序离子电流比时序显微镜图像具有更高的信噪比。在不同的捕获和电压条件下分析细胞膜的完整性。血清蛋白涂层显示出从移液器吸头释放细胞的改善。对细胞的轨迹和距离的测量表明,运动取决于喷射流和培养皿中的流。我们实现了与开放式微孔兼容的单个细胞的拾取和放置操作,同时使用光学显微镜进行观察并使用电流进行测量。

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