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首页> 外文期刊>Applied Microbiology and Biotechnology >Rapid determination of general cell status, cell viability, and optimal harvest time in eukaryotic cell cultures by impedance flow cytometry
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Rapid determination of general cell status, cell viability, and optimal harvest time in eukaryotic cell cultures by impedance flow cytometry

机译:通过阻抗流式细胞术快速测定一般细胞状态,细胞活力和真核细胞培养中的最佳收缩时间

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The determination of cell viability is essential to many areas of life sciences and biotechnology. Typically, cell viability measurements are based on the optical analysis of stained cells, which requires additional labeling steps and is hard to implement online. Frequency-dependent impedance flow cytometry (IFC) provides a label-free, fast, and reliable alternative to determine cell viability at the single cell level based on the Coulter principle. Here, we describe the application of IFC to eukaryotic cell cultures and compare the results to commonly used staining methods. Yeast cell parameters were assessed in normal and heat-inactivated cells as well as in alcoholic fermentation and long-term batch cultures providing a precise and fast determination of the cell viability and further quantitative measures of the cell culture status. As an important new application, we have investigated recombinant protein production in the widely used baculovirus insect cell expression system. The IFC analysis revealed the presence of a subpopulation of cells, which correlates with the protein expression yield, but it is not detectable with conventional optical cell counters. We tentatively identify this subpopulation as cells in the late phase of infection. Their detection can serve as a predictor for the optimal time point of harvest. The IFC technique should be generally applicable to many eukaryotic cell cultures in suspension, possibly also implemented online.
机译:细胞活力的测定对于许多生命科学和生物技术领域至关重要。通常,细胞活力测量基于染色电池的光学分析,这需要额外的标记步骤,并且很难在线实施。频率依赖性阻抗流式细胞术(IFC)提供无标记,快速,可靠的替代方案,以基于Coulter原理确定单个电池水平的细胞活力。在这里,我们描述IFC对真核细胞培养物的应用,并将结果与​​常用的染色方法进行比较。在正常和热灭活的细胞以及酒精发酵和长期间歇培养中评估酵母细胞参数,提供精确快速的细胞活力和细胞培养状态的进一步定量测量。作为重要的新应用,我们在广泛使用的杆状病毒昆虫细胞表达系统中研究了重组蛋白质产生。 IFC分析揭示了细胞亚群的存在,其与蛋白质表达产率相关,但是常规光学电池计数器无法检测到。我们暂时将该亚贫困视为感染后期细​​胞。它们的检测可以用作最佳收获时间点的预测因素。 IFC技术通常适用于许多在悬浮液中的真核细胞培养物,也可能也在网上实施。

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