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Overflow Microfluidic Networks for Open and Closed Cell Cultures on Chip

机译:芯片上开放式和封闭式细胞培养的溢流微流网络

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Microfluidics have a huge potential in biomedical research, in particular for studying interactions among cell populations that are involved in complex diseases. Here, we present "overflow" microfluidic networks (oMFNs) for depositing, culturing, and studying cell populations, which are plated in a few microliters of cell suspensions in one or several open cell chambers inside the chip and subsequently cultured for several days in vitro (DIV). After the cells have developed their phenotype, the oMFN is closed with a lid bearing microfluidic connections. The salient features of the chips are (1) overflow zones around the cell chambers for drawing excess liquid by capillarity from the chamber during sealing the oMFN with the lid, (2) flow paths from peripheral pumps to cell chambers and between cell chambers for interactive flow control, (3) transparent cell chambers coated with cell adhesion molecules, and (4) the possibility to remove the lid for staining and visualizing the cells after, for example, fixation. Here, we use a two-chamber oMFN to show the activation of purinergic receptors in microglia grown in one chamber, upon release of adenosine triphosphate (ATP) from astrocytes that are grown in another chamber and challenged with glutamate. These data validate oM-FNs as being particularly relevant for studying primary cells and dissecting the specific intercellular pathways involved in neurodegenerative and neuroinflammatory brain diseases.
机译:微流体技术在生物医学研究中具有巨大的潜力,特别是在研究与复杂疾病有关的细胞群之间的相互作用方面。在这里,我们介绍用于沉积,培养和研究细胞群体的“溢出”微流体网络(oMFNs),将其铺在芯片内部一个或几个开放细胞腔室中的几微升细胞悬液中,然后在体外培养数天(DIV)。细胞形成表型后,将oMFN用带有微流体连接的盖子封闭。芯片的显着特征是(1)围绕细胞室的溢流区,用于在用盖子密封oMFN时通过毛细管作用从室中吸出多余的液体;(2)从外围泵到细胞室以及细胞室之间的相互作用的流动路径流量控制;(3)涂有细胞粘附分子的透明细胞室,以及(4)在固定后可以取下盖子以染色和观察细胞。在这里,我们使用两腔oMFN来显示在星形胶质细胞释放三磷酸腺苷(ATP)后,小胶质细胞在一个小室中生长的小胶质细胞中嘌呤能受体的激活,该星形胶质细胞在另一个小室中生长并受到谷氨酸的刺激。这些数据证实oM-FNs与研究原代细胞和解剖涉及神经变性和神经炎性脑病的特定细胞间途径特别相关。

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