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Measurement of particle size distribution in mammalian cells in vitro by use of polarized light spectroscopy

机译:偏光光谱法体外测量哺乳动物细胞中的粒径分布

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We demonstrate the feasibility of measuring the particle size distribution (PSD) of internal cell structures in vitro. We use polarized light spectroscopy to probe the internal morphology of mammalian breast cancer (MCF7) and cervical cancer (Siha) cells. We find that graphing the least-squared error versus the scatterer size provides insight into cell scattering. A nonlinear optimization scheme is used to determine the PSD iteratively. The results suggest that 2-μm particles (possibly the mitochondria) contribute most to the scattering. Other subcellular structures, such as the nucleoli and the nucleus, may also contribute significantly. We reconstruct the PSD of the mitochondria, as verified by optical microscopy. We also demonstrate the angle dependence of the PSD.
机译:我们证明了在体外测量内部细胞结构的粒度分布(PSD)的可行性。我们使用偏振光谱来探测哺乳动物乳腺癌(MCF7)和宫颈癌(Siha)细胞的内部形态。我们发现,绘制最小二乘误差与散射体大小的关系图有助于深入了解细胞的散射情况。非线性优化方案用于迭代确定PSD。结果表明2-μm颗粒(可能是线粒体)对散射的贡献最大。其他亚细胞结构,如核仁和细胞核,也可能发挥重要作用。我们重建了线粒体的PSD,通过光学显微镜验证。我们还演示了PSD的角度依赖性。

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