Massachusetts Institute of Technology, Department of Mechanical Engineering, Cambridge, MA 02139, USA.
Lab Chip. 2011 Jul 7;11(13):2204-11. doi: 10.1039/c1lc20050j. Epub 2011 May 26.
This work presents the size-selective sorting of single biological cells using the assembly process known as templated assembly by selective removal (TASR). We have demonstrated experimentally, for the first time, the selective placement and sorting of single SF9 cells (clonal isolate derived from Spodoptera frugiperda (Fall Armyworm) IPLB-Sf21-AE cells) into patterned hemispherical sites on rigid assembly templates using TASR. Nearly 100% of the assembly sites on the template were filled with matching cells (with assembly density as high as 900 sites per mm(2)) within short time spans of 3 minutes. 3-D reconstruction of cell profiles and volume analysis of cells trapped inside assembly sites demonstrates that only those cells that match the assembly site precisely (within 0.5 μm) in size are assembled on the template. The assembly conditions are also compatible with the extension of TASR to mammalian cells. TASR-based size-selective structuring and sorting of biological systems represents a valuable tool with potential for implementation in biological applications such as cell sorting for medical research or diagnostics, templating for artificial tissue replication, or isolation of single cells for the study of biological or mechanical behavior.
本工作展示了使用选择性去除模板组装(TASR)这一已知的组装过程对单个生物细胞进行尺寸选择性分拣。我们首次通过 TASR 从实验上证明了可以将单个 Sf9 细胞(源自草地贪夜蛾(Fall Armyworm)IPLB-Sf21-AE 细胞的克隆分离物)选择性地放置和分拣到刚性组装模板上的图案化半球形位点中。在短短 3 分钟的时间内,模板上的近 100%的组装位点都被匹配的细胞填满(组装密度高达 900 个/平方毫米)。通过对细胞轮廓的三维重建和对被困在组装位点内的细胞的体积分析,证明只有那些尺寸与组装位点精确匹配(在 0.5μm 内)的细胞才能被组装到模板上。组装条件也与 TASR 向哺乳动物细胞的扩展兼容。基于 TASR 的生物系统的尺寸选择性结构和分拣是一种很有价值的工具,它在生物应用中有潜在的用途,例如用于医学研究或诊断的细胞分拣、用于人工组织复制的模板、或用于研究生物或机械行为的单个细胞的分离。