MindSeeds Laboratories, Via Fondazza 53, I-40125, Bologna, Italy.
Lab Chip. 2012 Sep 7;12(17):3168-76. doi: 10.1039/c2lc40124j. Epub 2012 Jul 5.
The inverted open microwell is a novel microstructure supporting isolation and trapping of cells, analysis of cell-cell and cell-molecule interactions and functional cell sorting. This work introduces the inverted open microwell concept, demonstrating successful isolation of K562 cells in 75 μm microwells fabricated on a flexible printed circuit board substrate, and recovery of viable cells onto standard microtiter plates after analysis and manipulation. Dielectrophoresis (DEP) was used during the delivery phase to control cell access to the microwell and force the formation of cell aggregates so as to ensure cell-cell contact and interaction. Cells were trapped at the air-fluid interface at the bottom edge of the open microwell. Once trapped, cells were retained on the meniscus even after DEP de-activation and fluid was exchanged to enable perfusion of nutrients and delivery of molecules to the microwell, as demonstrated by a calcein-staining protocol performed in the microsystem. Finally, cell viability was assessed on trapped cells by a calcein release assay and cell proliferation was demonstrated after multiple cells had been recovered in parallel onto standard microtiter plates.
倒置开放式微井是一种新颖的微结构,可支持细胞的隔离和捕获、细胞间和细胞-分子相互作用的分析以及功能细胞分选。本工作介绍了倒置开放式微井的概念,展示了在柔性印刷电路板衬底上制造的 75μm 微井中成功分离 K562 细胞,并在分析和操作后将存活细胞回收至标准微孔板上。在输送阶段使用介电泳(DEP)来控制细胞进入微井并迫使细胞聚集,以确保细胞间的接触和相互作用。细胞在开放式微井的底部边缘的气液界面处被捕获。一旦被捕获,即使在 DEP 去激活后和更换流体以允许灌注营养物质和分子递送至微井,细胞仍保留在弯月面,如通过在微系统中进行的钙荧光素染色方案所证明的那样。最后,通过钙荧光素释放测定评估被困细胞的细胞活力,并在平行回收多个细胞至标准微孔板后证明细胞增殖。