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Morphological observation and analysis using automated image cytometry for the comparison of trypan blue and fluorescence-based viability detection method

机译:使用自动图像细胞仪进行形态学观察和分析比较台盼蓝和基于荧光的活力检测方法

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摘要

The ability to accurately determine cell viability is essential to performing a well-controlled biological experiment. Typical experiments range from standard cell culturing to advanced cell-based assays that may require cell viability measurement for downstream experiments. The traditional cell viability measurement method has been the trypan blue (TB) exclusion assay. However, since the introduction of fluorescence-based dyes for cell viability measurement using flow or image-based cytometry systems, there have been numerous publications comparing the two detection methods. Although previous studies have shown discrepancies between TB exclusion and fluorescence-based viability measurements, image-based morphological analysis was not performed in order to examine the viability discrepancies. In this work, we compared TB exclusion and fluorescence-based viability detection methods using image cytometry to observe morphological changes due to the effect of TB on dead cells. Imaging results showed that as the viability of a naturally-dying Jurkat cell sample decreased below 70 %, many TB-stained cells began to exhibit non-uniform morphological characteristics. Dead cells with these characteristics may be difficult to count under light microscopy, thus generating an artificially higher viability measurement compared to fluorescence-based method. These morphological observations can potentially explain the differences in viability measurement between the two methods.
机译:准确确定细胞活力的能力对于进行良好控制的生物学实验至关重要。典型的实验范围从标准细胞培养到高级的基于细胞的测定,可能需要对下游实验进行细胞活力测量。传统的细胞活力测量方法一直是台盼蓝(TB)排斥试验。但是,由于引入了基于荧光的染料用于使用流式或基于图像的细胞计数系统进行细胞生存力测量,因此已有大量出版物比较了这两种检测方法。尽管以前的研究表明结核病排斥与基于荧光的生存力测量之间存在差异,但并未进行基于图像的形态学分析来检查生存力差异。在这项工作中,我们比较了结核排斥和基于荧光的活力检测方法,使用图像细胞仪观察了由于结核对死细胞的影响而导致的形态变化。成像结果表明,随着自然死亡的Jurkat细胞样品的活力降低到70%以下,许多TB染色的细胞开始表现出不均匀的形态特征。具有这些特征的死细胞可能很难在光学显微镜下计数,因此与基于荧光的方法相比,产生了人工更高的生存力测量结果。这些形态学观察可以潜在地解释两种方法之间活力测量的差异。

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