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Freeform micropatterning of living cells into cell culture medium using direct inkjet printing

机译:使用直接喷墨打印将活细胞自由形态化为细胞培养基

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摘要

Microfabrication methods have widely been used to control the local cellular environment on a micron scale. However, accurately mimicking the complexity of the in vivo tissue architecture while maintaining the freedom of form and design is still a challenge when co-culturing multiple types of cells on the same substrate. For the first time, we present a drop-on-demand inkjet printing method to directly pattern living cells into a cell-friendly liquid environment. High-resolution control of cell location is achieved by precisely optimizing printing parameters with high-speed imaging of cell jetting and impacting behaviors. We demonstrated the capabilities of the direct cell printing method by co-printing different cells into various designs, including complex gradient arrangements. Finally, we applied this technique to investigate the influence of the heterogeneity and geometry of the cell population on the infectivity of seasonal H1N1 influenza virus (PR8) by generating A549 and HeLa cells printed in checkboard patterns of different sizes in a medium-filled culture dish. Direct inkjet cell patterning can be a powerful and versatile tool for both fundamental biology and applied biotechnology.
机译:微细加工方法已被广泛用于控制微米级的局部细胞环境。然而,当在同一底物上共同培养多种类型的细胞时,在保持形式和设计自由度的同时准确地模拟体内组织结构的复杂性仍然是一个挑战。我们首次提出了一种按需喷墨印刷方法,可以将活细胞直接图案化成对细胞友好的液体环境。通过对细胞喷射和撞击行为进行高速成像,精确优化打印参数,可以实现细胞位置的高分辨率控制。我们通过将不同单元格共印到各种设计(包括复杂的梯度排列)中,展示了直接单元格印刷方法的功能。最后,我们通过在培养基填充的培养皿中产生以不同尺寸的棋盘图案打印的A549和HeLa细胞,来研究该技术的异质性和细胞群体几何形状对季节性H1N1流感病毒(PR8)感染性的影响。对于基础生物学和应用生物技术而言,直接喷墨细胞构图均可成为功能强大且用途广泛的工具。

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