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首页> 外文期刊>Journal of nanoscience and nanotechnology >Free-Standing Lipid Bilayers Based on Nanopore Array and Ion Channel Formation
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Free-Standing Lipid Bilayers Based on Nanopore Array and Ion Channel Formation

机译:基于纳米孔阵列和离子通道形成的独立脂双层

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Integrated nanopores are novel and versatile single-molecule sensors for individual label-free biopolymer detection and characterization. However, their studies and application requires a stable lipid bilayer to maintain protein function. Herein, we describe a method for producing lipid bilayers across a nanopore array on a silicon nitride substrate. We used a painting technique commonly used with Teflon films to embed alpha-hemolysin (alpha-HL) into bilayer lipid membranes (BLMs) to form an ion channel. This was carried out in nanofluid developed in our lab. The membrane formation process, stability of BLMs and ion channel recordings were monitored by patch clamp in real-time. BLM formation was demonstrated by electrical recording (<10 pS conductance) of suspended lipid bilayers spanning a nanopore in the range of +/- 100 mV. Membrane resistance (R-m) and capacitance (C-m) of the device with the bilayer were assessed by membrane test as above 1.0 G Omega and similar to 20 +/- 2 pF, respectively. The silicon nitride surface and aperture edge were smooth at the nanometer lever leading to remarkable membrane stability. The membrane lifetime was 5-24 h. A single alpha-HL channel inserted in 30-60 min applied a potential of +100 mV. The alpha-HL channel currents were recorded at similar to 100 +/- 10 pA. Such integrated nanopores enable analysis of channel functions under various solution conditions from the same BLM. This will open up a variety of applications for ion channels including high-throughput medical screening and diagnosis.
机译:集成纳米孔是一种新颖的和通用的单分子传感器,用于单个无标记的生物聚合物检测和表征。然而,他们的研究和应用需要稳定的脂质双层以维持蛋白质功能。在此,我们描述了一种在氮化硅衬底上穿过纳米孔阵列的脂质双层的方法。我们使用了一种常用的绘画技术,与Teflon薄膜一起使用,将α-溶血素(α-HL)嵌入双层脂质膜(BLMS)中以形成离子通道。这是在我们实验室开发的纳米流体进行的。实时地通过膜片夹具监测膜形成工艺,BLMS和离子通道记录的稳定性。通过在+/- 100mV的范围内捕获纳米孔的悬浮脂质双层的电气记录(<10 ps电导)来证明BLM形成。通过高于1.0gω的膜试验评估具有双层的装置的膜抗性(R-M)和电容(C-M),分别以高于1.0g Omega和类似于20 +/- 2pf。氮化硅表面和孔边缘在纳米杆处光滑,导致膜稳定性显着。膜寿命为5-24小时。在30-60分钟内插入的单个alpha-HL通道施加+100mV的电位。 α-HL通道电流记录在类似于100 +/- 10 PA。这种集成纳米孔使各种溶液条件下的通道功能的分析能够来自相同的BLM。这将为离子通道开辟各种应用,包括高通量医疗筛查和诊断。

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