首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Single-cell analysis of yeast, mammalian cells, and fungal spores with a microfluidic pressure-driven chip-based system
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Single-cell analysis of yeast, mammalian cells, and fungal spores with a microfluidic pressure-driven chip-based system

机译:基于微流体压力驱动芯片的系统对酵母,哺乳动物细胞和真菌孢子进行单细胞分析

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Background: Cytomics aims at understanding the function of cellular systems by analysis of single cells. Recently, there has been a growing interest in single cell measurements being performed in microfluidic systems. These systems promise to integrate staining, measurement, and analysis in it single system. One important aspect is the limitation of allowable cell sizes due to microfluidic channel dimensions. Here we want to demonstrate the broad applicability of microfluidic chip technology for the analysis of many different cell types.Methods: We have developed a microfluidic chip and measurement system that allows flow cytometric analysis of fluorescently stained cells from different organisms. In this setup, the cells are moved by pressure-driven flow inside a network of microfluidic channels and are analyzed individually by fluorescence detection.Results: We have successfully applied the system to develop a methodology to detect viable and dead cells in yeast cell populations. Also, we have measured short interfering RNA (siRNA) mediated silencing of protein expression in mammalian cells. In addition, we have characterized the infection state of Magnaportae grisea fungal spores.Conclusions: Results obtained with the microfluidic system demonstrate a broad applicability of microfluidic flow cytometry to measurement of various cell types. (C) 2004 Wiley-Liss, Inc.
机译:背景:细胞态细胞学旨在通过分析单个细胞来了解细胞系统的功能。最近,人们对在微流体系统中进行单细胞测量越来越感兴趣。这些系统有望将染色,测量和分析集成到单个系统中。一个重要方面是由于微流体通道尺寸的限制,允许的细胞大小。在这里,我们想证明微流控芯片技术在分析许多不同细胞类型中的广泛应用。方法:我们开发了一种微流控芯片和测量系统,可以对来自不同生物体的荧光染色细胞进行流式细胞术分析。在这种设置中,细胞通过压力驱动的流在微流通道网络内部移动,并通过荧光检测进行单独分析。结果:我们已经成功地将系统应用到开发方法中,以检测酵母细胞群体中的活细胞和死细胞。此外,我们已经测量了哺乳动物细胞中蛋白质表达的短干扰RNA(siRNA)介导的沉默。此外,我们已经表征了稻瘟病菌(Magnaportae grisea)真菌孢子的感染状态。结论:微流控系统获得的结果表明,微流控流式细胞仪广泛适用于各种细胞类型的测量。 (C)2004 Wiley-Liss,Inc.

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