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首页> 外文期刊>BMC Cell Biology >The individual-cell-based cryo-chip for the cryopreservation, manipulation and observation of spatially identifiable cells. II: Functional activity of cryopreserved cells
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The individual-cell-based cryo-chip for the cryopreservation, manipulation and observation of spatially identifiable cells. II: Functional activity of cryopreserved cells

机译:基于单个细胞的冷冻芯片,用于冷冻保存,操作和观察可识别空间的细胞。 II:冷冻保存的细胞的功能活性

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Background The cryopreservation and thawing processes are known to induce many deleterious effects in cells and might be detrimental to several cell types. There is an inherent variability in cellular responses among cell types and within individual cells of a given population with regard to their ability to endure the freezing and thawing process. The aim of this study was to evaluate the fate of cryopreserved cells within an optical cryo apparatus, the individual-cell-based cryo-chip (i3C), by monitoring several basic cellular functional activities at the resolution of individual cells. Results In the present study, U937 cells underwent the freezing and thawing cycle in the i3C device. Then a panel of vital tests was performed, including the number of dead cells (PI staining), apoptotic rate (Annexin V staining), mitochondrial membrane potential (TMRM staining), cytoplasm membrane integrity and intracellular metabolism (FDA staining), as well as post-thawing cell proliferation assays. Cells that underwent the freezing - thawing cycle in i3C devices exhibited the same functional activity as control cells. Moreover, the combination of the multi-parametric analysis at a single cell resolution and the optical and biological features of the device enable an accurate determination of the functional status of individual cells and subsequent retrieval and utilization of the most valuable cells. Conclusions The means and methodologies described here enable the freezing and thawing of spatially identifiable cells, as well as the efficient detection of viable, specific, highly biologically active cells for future applications.
机译:背景技术冷冻保存和解冻过程已知在细胞中诱导许多有害作用,并且可能对几种细胞类型有害。就其承受冷冻和融化过程的能力而言,在给定种群的细胞类型之间和单个细胞内,细胞应答存在固有的变异性。这项研究的目的是通过监测单个细胞分辨率下的几种基本细胞功能活性,来评估光学冷冻设备(基于单个细胞的冷冻芯片)中冷冻保存细胞的命运。结果在本研究中,U937细胞在i3C设备中经历了冻融循环。然后进行了一系列重要的测试,包括死细胞的数量(PI染色),凋亡率(Annexin V染色),线粒体膜电位(TMRM染色),细胞质膜完整性和细胞内代谢(FDA染色),以及解冻后细胞增殖测定。在i3C设备中经历了冻融循环的细胞表现出与对照细胞相同的功能活性。此外,在单细胞分辨率下进行多参数分析与该设备的光学和生物学特性相结合,可以准确确定单个细胞的功能状态,并随后回收和利用最有价值的细胞。结论此处描述的方法和方法可以冻结和解冻空间可识别的细胞,并有效检测有活力的,特异性的,具有高生物活性的细胞,以备将来应用。

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