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An Integrated Microfluidic Device for Monitoring Changes in Nitric Oxide Production in Single T-Lymphocyte (Jurkat) Cells

机译:集成的微流控装置用于监测单个T淋巴细胞(Jurkat)细胞中一氧化氮产生的变化

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摘要

A considerable amount of attention has been focused on the analysis of single cells in an effort to better understand cell heterogeneity in cancer and neurodegenerative diseases. Although microfluidic devices have several advantages for single cell analysis, few papers have actually demonstrated the ability of these devices to monitor chemical changes in perturbed biological systems. In this paper, a new microfluidic channel manifold is described that integrates cell transport, lysis, injection, electrophoretic separation, and fluorescence detection into a single device, making it possible to analyze individual cells at a rate of 10 cells/min in an automated fashion. The system was employed to measure nitric oxide (NO) production in single T-lymphocytes (Jurkat cells) using a fluorescent marker, 4-amino-5-methylamino-2',7'-difluorofluorescein diacetate (DAF-FM DA). The cells were also labeled with 6-carboxyfluorescein diacetate (6-CFDA) as an internal standard. The NO production by control cells was compared to that of cells stimulated using lipopolysaccharide (LPS), which is known to cause the expression of inducible nitric oxide synthase (iNOS) in immune-type cells. Statistical analysis of the resulting electropherograms from a population of cells indicated a twofold increase in NO production in the induced cells. These results compare nicely to a recently published bulk cell analysis of NO.
机译:为了更好地理解癌症和神经退行性疾病中的细胞异质性,相当多的注意力集中在单细胞的分析上。尽管微流体设备在单细胞分析中具有多个优势,但很少有论文实际证明了这些设备能够监测受扰生物系统中的化学变化。在本文中,描述了一种新的微流道歧管,它将细胞运输,裂解,注射,电泳分离和荧光检测整合到单个设备中,从而可以以自动化方式以10个细胞/分钟的速率分析单个细胞。该系统使用荧光标记物4-amino-5-methylamino-2',7'-difluorofluorescein diacetate(DAF-FM DA)来测量单个T淋巴细胞(Jurkat细胞)中一氧化氮(NO)的产生。还用6-羧基荧光素二乙酸酯(6-CFDA)作为内标标记细胞。将对照细胞的NO产生与使用脂多糖(LPS)刺激的细胞产生的NO进行比较,后者已知在免疫型细胞中引起诱导型一氧化氮合酶(iNOS)的表达。对来自细胞群体的电泳图的统计分析表明,诱导的细胞中NO生成增加了两倍。这些结果与最近发表的NO的大体积电池分析相比很好。

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