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Label-Free, Flow-Imaging Methods for Determination of Cell Concentration and Viability

机译:无标记,流量成像方法,用于测定细胞浓度和活力

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Purpose To investigate the potential of two flow imaging microscopy (FIM) techniques (Micro-Flow Imaging (MFI) and FlowCAM) to determine total cell concentration and cell viability. Methods B-lineage acute lymphoblastic leukemia (B-ALL) cells of 2 different donors were exposed to ambient conditions. Samples were taken at different days and measured with MFI, FlowCAM, hemocytometry and automated cell counting.Dead and live cells from a fresh B-ALL cell suspension were fractionated by flow cytometry in order to derive software filters based on morphological parameters of separate cell populations with MFI and FlowCAM. The filter sets were used to assess cell viability in the measured samples. Results All techniques gave fairly similar cell concentration values over the whole incubation period. MFI showed to be superior with respect to precision, whereas FlowCAM provided particle images with a higher resolution. Moreover, both FIM methods were able to provide similar results for cell viability as the conventional methods (hemocytometry and automated cell counting).Conclusion FIM-based methods may be advantageous over conventional cell methods for determining total cell concentration and cell viability, as FIM measures much larger samplevolumes, does not require labeling, is less laborious and provides images of individual cells.
机译:目的是研究两种流量成像显微镜(FIM)技术的潜力(微流量成像(MFI)和流量计),以确定总细胞浓度和细胞活力。方法2种不同供体的B族谱系急性淋巴细胞白血病(B-全部)细胞暴露于环境条件。在不同的日子中拍摄样品,并用MFI,流量计,血细胞测量法和自动细胞计数测量。通过流式细胞术分馏来自新鲜B-all细胞悬浮液的Id和活细胞,以基于单独细胞群的形态参数来衍生软件过滤器使用MFI和Purfacam。过滤器组用于评估测量样品中的细胞活力。结果所有技术在整个孵育期间都产生了相当类似的细胞浓度值。 MFI表现为精度优异,而流量计提供具有更高分辨率的粒子图像。此外,作为常规方法(血细胞测定法和自动细胞计数),FIM方法均能够为细胞活力提供类似的结果。结论FIM的方法可以是有利的,用于确定总细胞浓度和细胞活力的常规细胞方法,如FIM措施更大的样本volumes不需要标记,不太费力,提供单个细胞的图像。

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