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首页> 外文期刊>Microchimica Acta >Monitoring cell cultivation in microfluidic segments by optical pH sensing with a micro flow-through fluorometer using dye-doped polymer particles
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Monitoring cell cultivation in microfluidic segments by optical pH sensing with a micro flow-through fluorometer using dye-doped polymer particles

机译:通过使用掺杂染料的聚合物颗粒的微流通荧光计通过光学pH传感来监测微流体片段中的细胞培养

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摘要

Polymer microparticles containing an immobilized pH-sensitive dye are used for determination of pH inside microfluidic segments. The particles possess a hydrophilic surface in order to get a homogenous distribution inside the aqueous phase of microfluidic segments. The dye is coupled to the polymer matrix by a covalent bond. The pH can be determined by the read-out of fluorescence intensity. In contrast to dissolved indicator dyes, the chemical interference of the sensor particles with the surrounding solution is negligible. So, the particle-based sensing can easily be applied to the determination of pH changes during the cultivation of cells inside the microfluidic segments. The typical change of pH during cell cultivation can be used for monitoring the kinetic of cell cultivation inside single volumes in the nanoliter range, so that information about the metabolic activity of the organism can be obtained. An LED-based miniaturized flow-through fluorometer was developed to determine the fluorescence directly inside microtubes of an inner diameter of 0.5 mm. It allows measurement frequencies up to 60 Hz and is suited for characterization of fast moving large sequences of microfluidic segments. Keywords Microfluidic segments - Droplet-based flow - Sensor particles - Flow-through measurement - Microfluorometry
机译:包含固定的pH敏感染料的聚合物微粒用于确定微流控段内部的pH。颗粒具有亲水性表面,以便在微流体链段的水相内部获得均匀分布。染料通过共价键与聚合物基质偶联。 pH值可以通过读取荧光强度来确定。与溶解的指示剂染料相比,传感器颗粒对周围溶液的化学干扰可以忽略不计。因此,基于颗粒的传感可轻松应用于微流体段内部细胞培养过程中pH值的确定。细胞培养过程中pH值的典型变化可用于监测纳升范围内单个体积内细胞培养的动力学,从而可以获得有关生物体代谢活性的信息。开发了一种基于LED的微型流通荧光计,用于直接测定内径为0.5 mm的微管内部的荧光。它允许高达60 Hz的测量频率,适用于表征快速移动的微流体片段的大序列。关键词微流体段-基于液滴的流动-传感器颗粒-流通量测量-微荧光法

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