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Immobilization method of escherichia coli for microfluidic application

机译:用于微流控应用的大肠杆菌的固定化方法

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Escherichia coli (E. coli) has been used extensively in various industrial and scientific applications but has not been used widely for microfluidic applications because it is difficult to immobilize properly to a device. Here, we describe the development of an E. coli immobilization method for microfluidic devices using single-walled nanotubes (SWNTs) and dielectrophoresis (DEP) force. SWNTs and E. coli were aligned between two cantilever electrodes by a positive DEP force, forming a film of SWNTs with attached E. coli. For a microfluidic device, our one-step immobilization method has many advantages such as site-specific immobilization, easy density and shape control, an electrically connected structure from the electrodes to the E. coli, and rapid processing.
机译:大肠埃希氏菌(E.coli)已广泛用于各种工业和科学应用中,但由于难以将其正确固定在装置上,因此尚未广泛用于微流体应用。在这里,我们描述了使用单壁纳米管(SWNTs)和介电电泳(DEP)力的微流控设备的大肠杆菌固定方法的发展。 SWNT和大肠杆菌通过正DEP力在两个悬臂电极之间对齐,形成附着有大肠杆菌的SWNT薄膜。对于微流体设备,我们的一步固定方法具有许多优势,例如特定位置的固定,容易的密度和形状控制,从电极到大肠杆菌的电连接结构以及快速处理。

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