Chu Hyunjung, Doh Il, Cho Young-Ho
Digital Nanolocomotion Center, Department of Bio and Brain Engineering, KAIST, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Lab Chip. 2009 Mar 7;9(5):686-91. doi: 10.1039/b812213j. Epub 2008 Nov 24.
We present a three-dimensional (3D) particle focusing channel using the positive dielectrophoresis (pDEP) guided by a dielectric structure between two planar electrodes. The dielectric structure between two planar electrodes induces the maximum electric field at the center of the microchannel and particles are focused to the center of the microchannel by pDEP as they flow from the single sample injection port. Compared to the previous 3D particle focusing methods using standing surface acoustic wave (SSAW), hydrodynamic force, and negative dielectrophoresis (nDEP), the present device achieves the simple and effective particle focusing function without any additional fluidic ports and top electrodes. The present focusing channel is also fabricated by PDMS and glass substrate with electrodes, compatible for the integrated microbiochemical analysis system. We designed and fabricated the particle focusing channel based on the numerical estimation of particle position and focusing efficiency. In the experimental study, approximately 90% focusing efficiency was achieved within the focusing length of 2 mm, on both the x-z plane (top-view) and y-z plane (side-view) for 2 microm-diameter polystyrene (PS) beads at the applied voltage over 15 V(p-p) (square wave) and at a flow rate below 0.01 microl/min. Focusing experiments using 4.5 microm-diameter PS beads and yeast cells also verified that the present focusing channel can be applied to bio-particles having different sizes and properties. The present simple 3D particle focusing channel is suitable for use in integrated microbiochemical analysis systems.
我们展示了一种三维(3D)粒子聚焦通道,它利用两个平面电极之间的介电结构引导的正介电泳(pDEP)。两个平面电极之间的介电结构在微通道中心诱导出最大电场,当粒子从单个样品注入端口流动时,通过pDEP聚焦到微通道中心。与先前使用表面驻波(SSAW)、流体动力和负介电泳(nDEP)的3D粒子聚焦方法相比,本装置无需任何额外的流体端口和顶部电极即可实现简单有效的粒子聚焦功能。本聚焦通道也由聚二甲基硅氧烷(PDMS)和带有电极的玻璃基板制成,与集成微生物化学分析系统兼容。我们基于粒子位置和聚焦效率的数值估计设计并制造了粒子聚焦通道。在实验研究中,对于直径为2微米的聚苯乙烯(PS)珠,在施加电压超过15V(p-p)(方波)且流速低于0.01微升/分钟时,在2毫米的聚焦长度内,在x-z平面(顶视图)和y-z平面(侧视图)上均实现了约90%的聚焦效率。使用直径为4.5微米的PS珠和酵母细胞的聚焦实验也证实,本聚焦通道可应用于具有不同尺寸和性质的生物粒子。本简单的3D粒子聚焦通道适用于集成微生物化学分析系统。