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Characterization of the self-rotational motion of stored red blood cells by using optically-induced electrokinetics

机译:通过使用光诱导的电动学来表征储存的红细胞的自转运动

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We report a label-free approach toward the object of characterizing the self-rotational motions of red blood cells (RBCs) during storage under the optically-induced electrokinetics-based microfluidics mechanism. A theoretical analysis of the transmembrane potential across RBCs was performed getting a threshold voltage for keeping cellular biological integrity. Then, by investigation of the self-rotational behaviors of the individual RBCs in larger population, the RBCs that were stored more than three weeks statistically showed the distinctive self-rotational speed. Results verified that the self-rotational biomarkers of the RBCs could be used to label-free reckon the qualities of the stored RBCs in this kind of microfluidics chip. This finding may be further developed as a new criterion to real-time and label-free monitoring of the banked blood qualities, thereby diminishing the blood transfusion venture. (C) 2016 Optical Society of America
机译:我们报告无标签的方法来表征在光诱导的基于电动的微流控机制下存储过程中的红细胞(RBCs)的自转运动。对跨RBC的跨膜电位进行了理论分析,得到了用于保持细胞生物学完整性的阈值电压。然后,通过调查较大人群中单个RBC的自转行为,统计存储三周以上的RBC统计显示出独特的自转速度。结果证明,RBCs的自转生物标记物可用于无标签计算这种微流控芯片中所存储RBCs的质量。该发现可能会进一步发展为实时和无标签监测血库血液质量的新标准,从而减少了输血风险。 (C)2016美国眼镜学会

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