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用于微流控装置中表达谱分析的报告细胞的优化。

Optimization of reporter cells for expression profiling in a microfluidic device.

作者信息

Wieder Kenneth J, King Kevin R, Thompson Deanna M, Zia Cindy, Yarmush Martin L, Jayaraman Arul

机构信息

Center for Engineering in Medicine/Department of Surgery, Massachusetts General Hospital, Shriners Hospitals for Children, Harvard Medical School, Boston, MA 02114, USA.

出版信息

Biomed Microdevices. 2005 Sep;7(3):213-22. doi: 10.1007/s10544-005-3028-3.

Abstract

The emergence of green fluorescence protein (GFP) technologies has enabled non-invasive monitoring of cell function and gene expression. GFP-based expression studies are typically performed in traditional single-dish or multi-well formats to monitor a small number of genes or conditions that do not lend well to scaling, high-throughput analysis, or single-cell measurements. We have recently developed a microfluidic device, the Living Cell Array (LCA), for monitoring GFP-based gene expression in a high-throughput manner. Here, we report the optimization of GFP reporter cell characteristics in this microfluidic device for gene expression profiling. A reporter cell line for the transcription factor NF-kappa B was generated and used as the model cell line. Reporter cells were seeded in the LCA and NF-kappa B activated by addition of the cytokine TNF-alpha . Our studies show that the fluorescence kinetics from the reporter cell line in response to both single and repeated TNF-alpha stimulation in the LCA is similar to that observed in standard tissue culture. In addition, our data also indicate that multiple expression waves can be reliably monitored from a small population of reporter cells. Using reporter cell line subcloning and cell cycle synchronization, we demonstrate that the kinetics and magnitude of induced fluorescence in the reporter cell lines can be further improved to maximize the fluorescence readout from reporter cell lines, thereby improving their applicability to live cell expression profiling. Our studies establish some of the important criteria to be considered when using reporter cell lines for dynamic expression profiling in microfluidic devices.

摘要

绿色荧光蛋白(GFP)技术的出现使得对细胞功能和基因表达进行非侵入性监测成为可能。基于GFP的表达研究通常在传统的单皿或多孔板形式中进行,以监测少量基因或条件,这些基因或条件不太适合进行规模化、高通量分析或单细胞测量。我们最近开发了一种微流控装置——活细胞阵列(LCA),用于以高通量方式监测基于GFP的基因表达。在此,我们报告了在这种微流控装置中用于基因表达谱分析的GFP报告细胞特性的优化。构建了一种用于转录因子NF-κB的报告细胞系,并将其用作模型细胞系。将报告细胞接种到LCA中,并通过添加细胞因子TNF-α激活NF-κB。我们的研究表明,报告细胞系在LCA中对单次和重复TNF-α刺激的荧光动力学与在标准组织培养中观察到的相似。此外,我们的数据还表明,可以从少量报告细胞中可靠地监测多个表达波。通过使用报告细胞系亚克隆和细胞周期同步化,我们证明报告细胞系中诱导荧光的动力学和强度可以进一步改善,以最大化报告细胞系的荧光读数,从而提高其在活细胞表达谱分析中的适用性。我们的研究确立了在微流控装置中使用报告细胞系进行动态表达谱分析时需要考虑的一些重要标准。

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