Tan Wei-Heong, Takeuchi Shoji
Institute of Industrial Science, The University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo, 153-8505, Japan.
Lab Chip. 2008 Feb;8(2):259-66. doi: 10.1039/b714573j. Epub 2007 Dec 18.
This paper describes a selective retrieval method for arrayed monodisperse hydrogel beads containing cells. We implemented modifications such as: (i) the incorporation of cavities as nucleation sites, (ii) indirect retrieval using bubble powered jets and (iii) the use of low boiling point fluid in our device to realize a gentle optical-based retrieval method. Parametric studies confirmed that these modifications dramatically reduced both the intensity and duration of applied laser for bubble formation. We also demonstrated for the first time the formation of a bead-based dynamic cell microarray by introducing cell-encapsulating alginate beads into our dynamic microfluidic system, and successfully retrieved an alginate bead from a fluidic trap. Tests with trypan blue revealed that membrane integrity of the encapsulated cells was not compromised by the retrieval process.
本文描述了一种用于含有细胞的阵列式单分散水凝胶珠的选择性检索方法。我们进行了如下改进:(i)引入空穴作为成核位点;(ii)使用气泡驱动射流进行间接检索;(iii)在我们的装置中使用低沸点流体,以实现一种基于光学的温和检索方法。参数研究证实,这些改进显著降低了形成气泡所需激光的强度和持续时间。我们还首次通过将包裹细胞的藻酸盐珠引入我们的动态微流控系统,展示了基于珠的动态细胞微阵列的形成,并成功从流体阱中检索出一个藻酸盐珠。台盼蓝测试表明,检索过程未损害封装细胞的膜完整性。