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首页> 外文期刊>Current medicinal chemistry >Microfluidic devices for investigating stem cell gene regulation via single-cell analysis.
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Microfluidic devices for investigating stem cell gene regulation via single-cell analysis.

机译:通过单细胞分析研究干细胞基因调控的微流体装置。

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The underlying gene interactions that collectively govern the regulation of cellular events can be studied by simultaneous measurement of the levels of mRNA from multiple involved genes. Ideally a single cell should be studied, for comparison with other cells, like and unlike. However, conventional gene expression profiling techniques require several thousands or even millions of cells in order to obtain a sufficient amount of mRNA for analysis. Obtaining this number of cells of a single type is difficult, especially in attempting to study rare stem cells. Single-cell gene expression profiling can, in theory, overcome this limitation. However, conventional analytic methods and equipment are not suitable for analyzing a single-cell, which has a volume of only one or two picoliters. Inexpensive microfluidic devices that can precisely manipulate several nanoliters of fluids are, in theory, ideal for single-cell analysis. By performing biochemical reactions in small volumes, microfluidic devices also minimize material loss in single-cell analysis. This review describes current microfluidic technology applied to single-cell analysis, with a primary focus upon study of single mammalian stem cells. Microfluidic devices have the potential to transform single-cell analysis from a major technological challenge task to a relatively routine procedure for research and clinical assays.
机译:可以通过同时测量多个相关基因的mRNA水平来研究共同控制细胞事件调控的潜在基因相互作用。理想情况下,应该研究单个细胞,以便与其他细胞进行比较。然而,常规的基因表达谱分析技术需要数千或什至数百万个细胞以获得足够量的mRNA用于分析。很难获得这种数量的单一类型的细胞,尤其是在尝试研究稀有干细胞时。从理论上讲,单细胞基因表达谱分析可以克服这一限制。但是,常规的分析方法和设备不适用于分析单细胞,其体积仅为一或两微微升。从理论上讲,可以精确处理几纳升流体的廉价微流控设备非常适合单细胞分析。通过小批量进行生化反应,微流控设备还可将单细胞分析中的材料损失降至最低。这篇综述描述了当前用于单细胞分析的微流体技术,主要侧重于对单个哺乳动物干细胞的研究。微流控设备具有将单细胞分析从一项主要的技术挑战任务转变为一种相对常规的研究和临床测定方法的潜力。

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