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Measurements of multiply scattered light for on-line monitoring of changesin size distribution of cell debris suspension

机译:在线监测细胞碎片悬浮液大小分布变化的多重散射光测量

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摘要

Dual wavelength frequency-domain measurements of photon migration (FDPM) are conducted on filtrate samples obtained from an industrial centrifugation process designed to separate Escherichia coli cell debris from the inclusion bodies. FDPM measurements consist of detecting phase delay of intensity-modulated light at 670 and 820 (or 830) nm. Optical properties of isotropic scattering and absorption are obtained from the regression of phase delay data to the optical diffusion equation. We show that the corresponding intensity-based measurements alone cannot provide accurate and independent estimates for these optical properties. However, FDPM-derived scattering coefficients of filtrate solutions (primarily consisting of 0.1-0.2 mu m E. coli eel debris) are sensitive to similar to 1 vol % of added inclusion bodies (of 1-2 mu m size). The technique, theory, and future adaptation of FDPM as an on-line monitor to detect the loss of inclusion bodies in centrifugation following homogenization are presented and contrasted to conventional, intensity-based measurements.
机译:对从工业离心过程获得的滤液样品进行光子迁移(FDPM)的双波长频域测量,该样品经过设计,旨在从包涵体中分离出大肠杆菌细胞碎片。 FDPM测量包括检测强度调制的光在670和820(或830)nm处的相位延迟。各向同性散射和吸收的光学特性是从相位延迟数据到光学扩散方程的回归获得的。我们表明,单独的基于强度的测量无法单独提供这些光学特性的准确且独立的估计。但是,FDPM衍生的滤液溶液(主要由0.1-0.2μm的大肠杆菌鳗鱼碎片组成)的散射系数对添加体积为1-2μm的包涵体的体积百分数敏感。介绍了FDPM的技术,理论和未来的适应性,以作为在线监测器来检测均质化后离心过程中包涵体的损失,并将其与常规的基于强度的测量结果进行对比。

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