Yamaguchi Yukihiro, Yamamoto Takatoki
Department of Mechanical Engineering, School of Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
Micromachines (Basel). 2021 Jan 24;12(2):123. doi: 10.3390/mi12020123.
Many applications in biotechnology and medicine, among other disciplines, require the rapid enumeration of bacteria, preferably using miniaturized portable devices. Microfluidic technology is expected to solve this miniaturization issue. In the enumeration of bacteria in microfluidic devices, the technique of aligning bacteria in a single line prior to counting is the key to an accurate count at single-bacterium resolution. Here, we describe the numerical and experimental evaluation of a device utilizing a dielectrophoretic force to array bacteria in a single line, allowing their facile numeration. The device comprises a channel to flow bacteria, two counter electrodes, and a capture electrode several microns or less in width for arranging bacteria in a single line. When the capture electrode is narrower than the diameter of a bacterium, the entrapment efficiency of the one-dimensional array is 80% or more within 2 s. Furthermore, since some cell-sorting applications require bacteria to move against the liquid flow, we demonstrated that bacteria can move in a single line in the off-axial direction tilted 30° from the flow direction. Our findings provide the basis for designing miniature, portable devices for evaluating bacteria with single-cell accuracy.
在生物技术和医学等众多学科的许多应用中,都需要快速对细菌进行计数,最好是使用小型便携式设备。微流控技术有望解决这一小型化问题。在微流控设备中对细菌进行计数时,在计数前将细菌排列成单行的技术是以单细菌分辨率进行准确计数的关键。在此,我们描述了一种利用介电泳力将细菌排列成单行以方便计数的设备的数值和实验评估。该设备包括一个用于使细菌流动的通道、两个反电极以及一个宽度为几微米或更小的捕获电极,用于将细菌排列成单行。当捕获电极比细菌直径窄时,一维阵列的捕获效率在2秒内可达80%或更高。此外,由于一些细胞分选应用要求细菌逆着液流移动,我们证明了细菌可以在与流动方向倾斜30°的离轴方向上单行移动。我们的研究结果为设计用于单细胞精度评估细菌的微型便携式设备提供了基础。