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Highly efficient microfluidic device for cell trapping and pairing towards cell-cell communication analysis

机译:高效的微流体装置,用于细胞捕获和配对,以进行细胞间通讯分析

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摘要

Understanding the mechanism of cell-cell communication is the key to unravel many physiological and pathological processes of multicellular organisms, but limited by lacking of highly efficient analytical approach, particularly at single cells resolution. In this work, we proposed a novel microfluidic-based method to achieve cell pairing for cell-cell communication investigation. Based on the only application of hydrodynamics, two types of cells were trapped by face-to-face heart-shaped micro-protrusions with high efficiency and single-cell accuracy. Oil-isolated micro-chambers were used to reduce cross-talk and spatial confinement on cells for long-term cell culture with high viability. The efficiency of 93% and 84% for single cells trapping and cells pairing were realized, respectively. To demonstrate the capability of the proposed platform for probing intercellular communication, the proliferation of cancer cell co-cultured with stromal cell was further discussed at single cells resolution. The result showed that the HUVEC could enhance the proliferation of HeLa cell. We believed that this microfluidic device as a flexible and reliable tool would have wide applications in the study of intercellular communication.
机译:了解细胞间通信的机制是解开多细胞生物的许多生理和病理过程的关键,但由于缺乏高效的分析方法而受到限制,尤其是在单细胞分辨率下。在这项工作中,我们提出了一种新颖的基于微流体的方法来实现细胞配对的细胞间通信研究。基于流体力学的唯一应用,两种类型的细胞被高效高效且单细胞精度的面对面心形微突起捕获。油分离的微腔室可用于减少细胞上的串扰和空间限制,从而可长期培养具有高活力的细胞。单细胞捕获和细胞配对的效率分别达到93%和84%。为了证明所提出的平台探测细胞间通讯的能力,在单细胞分辨率下进一步讨论了与基质细胞共培养的癌细胞的增殖。结果表明,HUVEC可以促进HeLa细胞的增殖。我们相信,这种微流体装置作为一种灵活而可靠的工具将在细胞间通讯的研究中具有广泛的应用。

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