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Cell Analysis on Microfluidics Combined with Mass Spectrometry

机译:微流体与质谱结合的细胞分析

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Cell analysis is of great significance for the exploration of human diseases and health. However, there are not many techniques for high-throughput cell analysis in the simulated cell microenvironment. The high designability of the microfluidic chip enables multiple kinds of cells to be co-cultured on the chip, with other functions such as sample preprocessing and cell manipulation. Mass spectrometry (MS) can detect a large number of biomolecules without labelling. Therefore, the application of the microfluidic chip coupled with MS has represented a major branch of cell analysis over the past decades. Here, we concisely introduce various microfluidic devices coupled with MS used for cell analysis. The main functions of microfluidic devices are described first, followed by introductions of different interfaces with different types of MS. Then, their various applications in cell analysis are highlighted, with an emphasis on cell metabolism, drug screening, and signal transduction. Current limitations and prospective trends of microfluidics coupled with MS are discussed at the end.
机译:细胞分析对于探索人类疾病和健康是具有重要意义。然而,在模拟细胞微环境中没有许多用于高通量细胞分析的技术。微流体芯片的高可指性能够在芯片上共同培养多种细胞,其它功能如样品预处理和细胞操纵。质谱仪(MS)可以检测大量的生物分子而不标记。因此,与MS耦合的微流体芯片的应用已经在过去几十年中代表了细胞分析的主要分支。这里,我们简单地引入了与用于细胞分析的MS耦合的各种微流体装置。首先描述微流体装置的主要功能,然后通过具有不同类型的MS的不同接口引入。然后,突出显示其细胞分析中的各种应用,重点是细胞代谢,药物筛选和信号转导。最后讨论了与MS耦合的微流体的当前限制和前瞻性趋势。

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