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Combined optical coherence phase microscopy and impedance sensing measurements of differentiating adipose derived stem cells

机译:光学相干相显微镜和阻抗感应测量相结合的方法来分化脂肪干细胞

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There is a growing interest in monitoring differentiating stem cells in 2D culture without the use of labelling agents. In this study we explore the feasibility of a multimodality method that combines impedance sensing (IS) and optical coherence phase microscopy (OCPM) to monitor the main biological events associated with adipose derived stem cells differentiation into different lineages. Adipose derived stem cells were cultured in Mesenpro RS medium on gold electrode arrays. The system (ECIS, Applied biophysics) is connected to a lock-in amplifier controlled by a computer, and the complex impedance is derived from the in phase and out of phase voltages. Multi-frequency measurements spanning from 500Hz to 100 kHz are recorded every 2 minutes. The Optical coherence phase microscope is build around a Thorlabs engine (930nm FWHM: 90nm) and connected to a custom build microscope probe. The IS and OCPM were successfully integrated. The electrode area (250um) was imaged with a lateral resolution of 1.5um during impedance measurements. Impedance sensing gave an average measurement of differentiation, as a change in impedance over the electrode area, whereas OCPM provides additional information on the cellular events occurring on top of the electrode. The information retrieved from OCPM will feed a mathematical model correlating cellular differentiation and impedance variation. In this study we have demonstrated the feasibility of integrating two non-invasive monitoring techniques that will be instrumental in designing stem cell based screening assays.
机译:在不使用标记剂的情况下,在2D培养中监控分化干细胞的兴趣日益浓厚。在这项研究中,我们探索了结合阻抗传感(IS)和光学相干相显微镜(OCPM)来监测与脂肪衍生干细胞分化为不同谱系相关的主要生物学事件的多模态方法的可行性。脂肪来源的干细胞在Mesenpro RS培养基中的金电极阵列上培养。该系统(ECIS,应用生物物理学)连接到由计算机控制的锁定放大器,并且复阻抗由同相和异相电压得出。每2分钟记录一次从500Hz到100 kHz的多频测量。光学相干相显微镜围绕Thorlabs引擎(930nm FWHM:90nm)构建,并连接到定制的显微镜探针。 IS和OCPM已成功集成。在阻抗测量期间,以1.5um的横向分辨率对电极区域(250um)成像。阻抗感测提供了差分的平均测量值,作为电极区域上阻抗的变化,而OCPM提供了有关发生在电极顶部的细胞事件的更多信息。从OCPM检索到的信息将提供与细胞分化和阻抗变化相关的数学模型。在这项研究中,我们证明了整合两种非侵入性监测技术的可行性,这将有助于设计基于干细胞的筛查方法。

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