Altomare L, Borgatti M, Medoro G, Manaresi N, Tartagni M, Guerrieri R, Gambari R
Center of Excellence on Electronic Systems (ARCES), University of Bologna, Bologna, Italy.
Biotechnol Bioeng. 2003 May 20;82(4):474-9. doi: 10.1002/bit.10590.
In this study we describe an original, efficient, and innovative printed circuit board (PCB) device able to generate dielectrophoresis-based, software-controlled cages that can be moved to any place inside a microchamber. Depending on their dielectrophoretic properties, eukaryotic cells can be "entrapped" in cages and moved under software control. The main conclusion gathered from the experimental data reported is that the PCB device based on dielectrophoresis permits levitation and movement of different tumor cells at different dielectrophoresis conditions. The results presented herein are therefore the basis for experiments aimed at forced interactions or separation of eukaryotic cells using "lab-on-a-chip." In fact, because many cages can be controlled at the same time, and two or more cages can be forced to share the same or a different location, it is possible, in principle, either to bring in contact cells of a differing histotype or to separate them.
在本研究中,我们描述了一种新颖、高效且创新的印刷电路板(PCB)装置,该装置能够生成基于介电泳的、由软件控制的笼子,这些笼子可以移动到微腔内的任何位置。根据真核细胞的介电泳特性,它们可以被“捕获”在笼子里,并在软件控制下移动。从所报告的实验数据得出的主要结论是,基于介电泳的PCB装置能够在不同的介电泳条件下使不同的肿瘤细胞悬浮和移动。因此,本文所呈现的结果是旨在利用“芯片实验室”对真核细胞进行强制相互作用或分离的实验的基础。事实上,由于可以同时控制多个笼子,并且可以迫使两个或更多笼子共享相同或不同的位置,原则上有可能使不同组织类型的细胞接触或分离它们。