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Novel approach for the prediction of cell densities and viability in standardized translucent cell culture biochips with near infrared spectroscopy

机译:利用近红外光谱技术预测标准化半透明细胞培养生物芯片中细胞密度和活力的新方法

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摘要

Near infrared spectroscopy is a rapid and nondestructive method for compositional analysis of biological material. The technology is widely used within bioreactors and possesses potential as a standardized method for quality control in miniaturized microfluidic cell culture systems. Here, we established a method for quantification of cell density and viability of adherent HepaRG cells cultured in a translucent, miniaturized cell culture biochip. The newly developed statistical models for interpretation of near infrared spectroscopy from biochips are the basis for a novel method of fast, continuous, and contact‐free analysis of cell viability and real‐time monitoring of cell growth. The technique thus paves the way for a robust and reliable high‐throughput analysis of biochip‐embedded cell cultures.
机译:近红外光谱法是一种快速,无损的生物材料成分分析方法。该技术被广泛用于生物反应器中,并具有作为微型化微流控细胞培养系统中质量控制的标准化方法的潜力。在这里,我们建立了一种量化半透明,小型化细胞培养生物芯片中培养的贴壁HepaRG细胞的细胞密度和活力的方法。最新开发的用于解释生物芯片中近红外光谱的统计模型是快速,连续和无接触分析细胞生存力以及实时监测细胞生长的新方法的基础。因此,该技术为生物芯片嵌入式细胞培养的可靠,高通量分析铺平了道路。

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