首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >3D Insulator-based dielectrophoresis using DC-biased, AC electric fields for selective bacterial trapping
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3D Insulator-based dielectrophoresis using DC-biased, AC electric fields for selective bacterial trapping

机译:基于3D绝缘体的介电泳,使用DC偏压,AC电场进行选择性细菌捕获

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摘要

Insulator-based dielectrophoresis (iDEP) is a well-known technique that harnesses electric fields for separating, moving, and trapping biological particle samples. Recent work has shown that utilizing DC-biased AC electric fields can enhance the performance of iDEP devices. In this study, an iDEP device with 3D varying insulating structures analyzed in combination with DC biased AC fields is presented for the first time. Using our unique reactive ion etch lag, the mold for the 3D microfluidic chip is created with a photolithographic mask. The 3D iDEP devices, whose largest dimensions are 1 cm long, 0.18 cm wide, and 90 mu m deep are then rapidly fabricated by curing a PDMS polymer in the glass mold. The 3D nature of the insulating microstructures allows for high trapping efficiency at potentials as low as 200 Vpp. In this work, separation of Escherichia coli from 1 mu m beads and selective trapping of live Staphylococcus aureus cells from dead S. aureus cells is demonstrated. This is the first reported use of DC-biased AC fields to selectively trap bacteria in 3D iDEP microfluidic device and to efficiently separate particles where selectivity of DC iDEP is limited.
机译:基于绝缘体的介电电泳(iDEP)是一种众所周知的技术,可以利用电场来分离,移动和捕获生物颗粒样本。最近的工作表明,利用直流偏置的交流电场可以增强iDEP器件的性能。在这项研究中,首次提出了具有3D可变绝缘结构的iDEP器件,并结合直流偏置的交流场进行了分析。利用我们独特的反应性离子蚀刻滞后,可通过光刻掩模为3D微流控芯片制造模具。然后通过在玻璃模具中固化PDMS聚合物,快速制造3D iDEP设备,其最大尺寸为1厘米长,0.18厘米宽和90微米深。绝缘微结构的3D性质允许在低至200 Vpp的电势下实现高捕获效率。在这项工作中,证明了从1微米的珠子中分离大肠杆菌,并从死的金黄色葡萄球菌细胞中选择性捕获了活的金黄色葡萄球菌细胞。这是首次报道使用直流偏置的交流场来选择性地将细菌捕获在3D iDEP微流体设备中,并有效分离DC iDEP选择性受限的颗粒。

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