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Optical imaging of cell mass and growth dynamics

机译:光学成像的细胞质量和生长动力学

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摘要

Using novel interferometric quantitative phase microscopy methods, we demonstrate that the surface integral of the optical phase associated with live cells is invariant to cell water content. Thus, we provide an entirely noninvasive method to measure the nonaqueous content or “dry mass” of living cells. Given the extremely high stability of the interferometric microscope and the femtogram sensitivity of the method to changes in cellular dry mass, this new technique is not only ideal for quantifying cell growth but also reveals spatially resolved cellular and subcellular dynamics of living cells over many decades in a temporal scale. Specifically, we present quantitative histograms of individual cell mass characterizing the hypertrophic effect of high glucose in a mesangial cell model. In addition, we show that in an epithelial cell model observed for long periods of time, the mean squared displacement data reveal specific information about cellular and subcellular dynamics at various characteristic length and time scales. Overall, this study shows that interferometeric quantitative phase microscopy represents a noninvasive optical assay for monitoring cell growth, characterizing cellular motility, and investigating the subcellular motions of living cells.
机译:使用新颖的干涉定量相显微镜方法,我们证明与活细胞相关的光学相的表面积分对于细胞含水量是不变的。因此,我们提供了一种完全非侵入性的方法来测量活细胞的非水含量或“干质量”。鉴于干涉显微镜的极高稳定性以及该方法对细胞干质量变化的飞克灵敏度,这项新技术不仅是定量细胞生长的理想选择,而且还揭示了数十年来数十种活细胞的空间分辨细胞和亚细胞动力学。时间尺度。具体来说,我们提出了单个细胞质量的定量直方图,表征了系膜细胞模型中高糖的肥大作用。此外,我们表明,在长时间观察到的上皮细胞模型中,均方位移数据揭示了有关各种特征长度和时间尺度下细胞和亚细胞动力学的特定信息。总体而言,这项研究表明,干涉定量相显微镜代表了一种用于监测细胞生长,表征细胞运动性和研究活细胞亚细胞运动的非侵入性光学检测方法。

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