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Transport,retention and fluorescent measurement of single biological cells studied in microfluidic chipst

机译:在微流控芯片中研究的单个生物细胞的转运,保留和荧光测量

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Cellular manipulation and fluorescent measurement were performed on two types of biological cells.First,transport and retention of yeast cells were demonstrated on a glass microfluidic chip,which consists of special U-shaped microstructures.These microstructures have the openings parallel to the liquid flow and weirs perpendicular to the flow.These allow the retention of yeast cells in the U-shaped pocket and drainage of liquid over the weirs.Thereafter,the same chip was used to carry out real-time fluorescent measurement for the cellular changes in single Jurkat T cells.In this case,the Jurkat cells were localized inside the straight portion of a microchannel.Fluorescent imaging on the same,single suspension cell was carried out to study two cellular processes occurring in viable cells,(1) the intracellular conversion of fluorescein diacetate (FDA) to fluorescein;(2) the degradation of an inhibitory protein,IkappaB,as involved in the NF-kappaB signalling pathway.In the former,the increase in fluorescent intensity of single Jurkat T cells (due to fluorescein formation) was measured;whereas in the latter,the decrease in the fluorescent intensity of a single transfected Jurkat cell (due to the degradation of the IkappaB-EGFP fusion protein) was monitored.In addition,we employed a Jurkat cell expressed with IKB-EGFP to probe any possible action of an herbal compound,isoliquiritigenin (IQ),on the degradation of IKB-EGFP.These examples have demonstrated that Jurkat cells remain viable within microfluidic channels for cellular studies and that the microfluidic chip can facilitate monitoring of cellular changes of biological cells at the single cell level and in the same cell.
机译:在两种类型的生物细胞上进行了细胞操作和荧光测量。首先,在玻璃微流体芯片上证明了酵母细胞的运输和保留,该芯片由特殊的U形微结构组成,这些微结构的开口与液体流动平行,并且垂直于水流的堰。这些允许将酵母细胞保留在U形袋中并在堰上排干液体。此后,使用同一芯片对单个Jurkat T中的细胞变化进行实时荧光测量在这种情况下,Jurkat细胞位于微通道的笔直部分内。在同一荧光成像上,对单个悬浮细胞进行了研究,以研究活细胞中发生的两个细胞过程,(1)荧光素二乙酸酯的细胞内转化(FDA)发出荧光素;(2)抑制蛋白IkappaB的降解,与NF-kappaB信号通路有关。测量单个Jurkat T细胞的荧光强度是否容易(由于荧光素的形成);而在后者中,监测单个转染的Jurkat T细胞的荧光强度的下降(​​由于IkappaB-EGFP融合蛋白的降解)此外,我们采用了表达IKB-EGFP的Jurkat细胞,以探究中草药化合物异寡糖原蛋白(IQ)对IKB-EGFP降解的任何可能作用。这些例子表明Jurkat细胞在微流控通道中仍保持活力细胞研究以及微流控芯片可以促进在单个细胞水平和同一细胞中监测生物细胞的细胞变化。

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