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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Highly robust lipid membranes on crystalline S-layer supports investigated by electrochemical impedance spectroscopy
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Highly robust lipid membranes on crystalline S-layer supports investigated by electrochemical impedance spectroscopy

机译:电化学阻抗谱研究了晶体S层载体上的高度坚固的脂质膜

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摘要

In the present work, S-layer supported lipid membranes formed by a modified Langmuir–Blodgett technique were investigated by electrochemical impedance spectroscopy (EIS). Basically two intermediate hydrophilic supports for phospholipid- (DPhyPC) and bipolar tetraetherlipid- (MPL from Thermoplasma acidophilum) membranes have been applied: First, the S-layer protein SbpA isolated from Bacillus sphaericus CCM 2177 recrystallized onto a gold electrode; and second, as a reference support, an S-layer ultrafiltration membrane (SUM), which consists of a microfiltration membrane (MFM) with deposited S-layer carrying cell wall fragments. The electrochemical properties and the stability of DPhyPC and MPL membranes were found to depend on the used support. The specific capacitances were 0.53 and 0.69 F/cm~2 for DPhyPC bilayers and 0.75 and 0.77 μF/cm~2 for MPL monolayers resting on SbpA and SUM, respectively. Membrane resistances of up to 80 MΩ cm~2 were observed for DPhyPC bilayers on SbpA. In addition, membranes supported by SbpA exhibited a remarkable long-term robustness of up to 2 days. The membrane functionality could be demonstrated by reconstitution of membrane-active peptides such as valinomycin and alamethicin. The present results recommend S-layer-supported lipid membranes as promising structures for membrane protein-based biosensor technology.
机译:在目前的工作中,通过电化学阻抗谱(EIS)研究了由改良的Langmuir-Blodgett技术形成的S层脂质膜。基本上已经为磷脂膜(DPhyPC)和双极性四醚脂膜(来自嗜热嗜热菌的MPL)膜使用了两种中间亲水性载体:首先,从球形芽孢杆菌CCM 2177分离的S层蛋白SbpA重结晶到金电极上;第二,作为参考支持,S层超滤膜(SUM),由具有沉积的S层携带细胞壁碎片的微滤膜(MFM)组成。发现DPhyPC和MPL膜的电化学性质和稳定性取决于所用的载体。 DPhyPC双层的比电容为0.53和0.69 F / cm〜2,而搁置在SbpA和SUM上的MPL单层的比电容分别为0.75和0.77μF/ cm〜2。在SbpA上,DPhyPC双层膜的膜电阻高达80MΩcm〜2。另外,由SbpA支撑的膜表现出了长达2天的出色的长期耐用性。膜功能可以通过重组膜活性肽(如缬氨霉素和丙乐霉素)来证明。目前的结果推荐S层支持脂质膜作为基于膜蛋白的生物传感器技术的有前途的结构。

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