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Droplet-based microfluidic system to form and separate multicellular spheroids using magnetic nanoparticles

机译:基于液滴的微流体系统,利用磁性纳米粒子形成和分离多细胞球体

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摘要

The importance of creating a three-dimensional (3-D) multicellular spheroid has recently been gaining attention due to the limitations of monolayer cell culture to precisely mimic in vivo structure and cellular interactions. Due to this emerging interest, researchers have utilized new tools, such as microfluidic devices, that allow high-throughput and precise size control to produce multicellular spheroids. We have developed a droplet-based microfluidic system that can encapsulate both cells and magnetic nanoparticles within alginate beads to mimic the function of a multicellular tumor spheroid. Cells were entrapped within the alginate beads along with magnetic nanoparticles, and the beads of a relatively uniform size (diameters of 85% of the beads were 170-190 μm) were formed in the oil phase. These beads were passed through parallel streamlines of oil and culture medium, where the beads were magnetically transferred into the medium phase from the oil phase using an external magnetic force. This microfluidic chip eliminates additional steps for collecting the spheroids from the oil phase and transferring them to culture medium. Ultimately, the overall spheroid formation process can be achieved on a single microchip.
机译:由于单层细胞培养不能精确模拟体内结构和细胞相互作用,近来创建三维(3-D)多细胞球体的重要性已受到关注。由于这种新出现的兴趣,研究人员利用了诸如微流控设备之类的新工具,这些工具可以实现高通量和精确的尺寸控制,从而生产出多细胞球体。我们已经开发了基于液滴的微流控系统,该系统可以将细胞和磁性纳米颗粒封装在藻酸盐珠粒中,以模仿多细胞肿瘤球体的功能。将细胞与磁性纳米颗粒一起包埋在藻酸盐珠粒中,并且在油相中形成相对均匀大小的珠粒(85%的珠粒直径为170-190μm)。使这些珠粒通过油和培养基的平行流线,在其中使用外部磁力将珠粒从油相磁性转移到培养基相中。这种微流控芯片省去了从油相收集球状体并将其转移到培养基中的其他步骤。最终,整个球体的形成过程可以在单个微芯片上实现。

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