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Cell electrophoresis on a chip: what can we know from the changes in electrophoretic mobility?

机译:芯片上的细胞电泳:从电泳迁移率的变化中我们可以知道什么?

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An overview of both experimental and theoretical studies of cell electrophoresis mobility (EPM) over the past fifty years and the relevance of cell EPM measurement are presented and discussed from the viewpoint of exploring the potential use of cell EPM as an index of the biological condition of cells. Physical measurements of the optical and/or electrical properties of cells have been attracting considerable attention as noninvasive cell-evaluation methods that are essential for the future of cell-based application technologies such as cell-based drug screening and cell therapy. Cell EPM, which can be measured in a noninvasive manner by cell electrophoresis, reflects the electrical and mechanical properties of the cell surface. Although the importance of cell EPM has been underestimated for a long time, mostly owing to the technical difficulties associated with its measurement, recent improvements in measurement technology using microcapillary chips have been changing the situation: cell EPM measurement has become more reliable and faster. Recent studies using the automated microcapillary cell electrophoresis system have revealed the close correlation between cell EPM and important biological phenomena including cell cycle, apoptosis, enzymatic treatment, and immune reaction. In particular, the converged EPM distribution observed for synchronized cells has altered the conventional belief that cell EPMs vary considerably. Finding a new significance of cell EPM is likely to lead to noninvasive cell evaluation methods essential for the next-generation of cell engineering.
机译:提出并讨论了过去五十年来细胞电泳迁移率(EPM)的实验和理论研究,以及细胞EPM测量的相关性,并探讨了将细胞EPM用作细胞生物学状态指标的潜力。细胞。作为非侵入性细胞评估方法,对细胞的光学和/或电学性质的物理测量已引起了相当大的关注,这对于基于细胞的应用技术(如基于细胞的药物筛选和细胞疗法)的未来至关重要。可以通过细胞电泳以无创方式测量的细胞EPM反映了细胞表面的电气和机械性能。尽管长期以来低估了电池EPM的重要性,这主要是由于与测量有关的技术困难,但是使用微毛细管芯片的测量技术的最新改进已经改变了这种情况:电池EPM测量变得更加可靠,更快。使用自动微毛细管细胞电泳系统的最新研究表明,细胞EPM与重要的生物学现象(包括细胞周期,细胞凋亡,酶处理和免疫反应)之间有着密切的联系。特别地,对于同步小区观察到的收敛的EPM分布已经改变了传统的信念,即小区EPM变化很大。寻找细胞EPM的新意义可能会导致无创细胞评估方法,这对于下一代细胞工程至关重要。

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