Tavana H, Jovic A, Mosadegh B, Lee Q Y, Liu X, Luker K E, Luker G D, Weiss S J, Takayama S
Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.
Nat Mater. 2009 Sep;8(9):736-41. doi: 10.1038/nmat2515. Epub 2009 Aug 16.
Microscale biopatterning enables regulation of cell-material interactions and cell shape, and enables multiplexed high-throughput studies in a cell- and reagent-efficient manner. The majority of available techniques rely on physical contact of a stamp, pin, or mask with mainly a dry surface. Inkjet and piezoelectric printing is carried out in a non-contact manner but still requires a substantially dry substrate to ensure fidelity of printed patterns. These existing methods, therefore, are limited for patterning onto delicate surfaces of living cells because physical contact or substantially dry conditions are damaging to them. Microfluidic patterning with laminar streams does enable non-contact patterning in fully aqueous environments but with limited throughput and reagent diffusion across interfacial flows. Here, we describe a polymeric aqueous two-phase system that enables patterning nanolitres of a reagent-containing aqueous phase, in arbitrary shapes, within a second aqueous phase covering a cell monolayer. With the appropriate medium formulation, reagents of interest remain confined to the patterned phase without significant diffusion. The fully aqueous environment ensures high reagent activity and cell viability. The utility of this strategy is demonstrated with patterned delivery of genetic materials to mammalian cells for phenotypic screening of gene expression and gene silencing.
微尺度生物图案化能够调控细胞与材料的相互作用以及细胞形状,并能以细胞和试剂高效的方式进行多重高通量研究。大多数现有技术依赖于印章、针或掩膜与主要为干燥表面的物理接触。喷墨打印和压电打印以非接触方式进行,但仍需要基本上干燥的基底以确保打印图案的保真度。因此,这些现有方法在将图案打印到活细胞的脆弱表面上时受到限制,因为物理接触或基本上干燥的条件会对它们造成损害。利用层流进行微流体图案化确实能够在完全水性的环境中进行非接触图案化,但通量有限且试剂会在界面流中扩散。在此,我们描述了一种聚合物水两相系统,该系统能够在覆盖细胞单层的第二水相中以任意形状图案化纳升体积的含试剂水相。通过适当的介质配方,感兴趣的试剂会被限制在图案化相中,而不会有明显扩散。完全水性的环境确保了高试剂活性和细胞活力。通过将遗传物质图案化递送至哺乳动物细胞以进行基因表达和基因沉默的表型筛选,证明了该策略的实用性。