首页> 外文期刊>The European physical journal, E. Soft matter >A comparison of ion channel current blockades caused by individual poly(ethylene glycol) molecules and polyoxometalate nanoclusters
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A comparison of ion channel current blockades caused by individual poly(ethylene glycol) molecules and polyoxometalate nanoclusters

机译:单独的聚(乙二醇)分子和多氧酸盐纳米能量引起的离子通道电流阻断的比较

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.Proteinaceous nanometer-scale pores have been used to detect and physically characterize many different types of analytes at the single-molecule limit. The method is based on the ability to measure the transient reduction in the ionic channel conductance caused by molecules that partition into the pore. The distribution of blockade depth amplitudes and residence times of the analytes in the pore are used to physically and chemically characterize them. Here we compare the current blockade events caused by flexible linear polymers of ethylene glycol (PEGs) and structurally well-defined tungsten polyoxymetallate nanoparticles in the nanopores formed by Staphylococcus aureus-hemolysin and Aeromonas hydrophila aerolysin. Surprisingly, the variance in the ionic current blockade depth values for the relatively rigid metallic nanoparticles is much greater than that for the flexible PEGs, possibly because of multiple charged states of the polyoxymetallate clusters.
机译:。普通素纳米纹状体孔已经用于检测和物理表征单分子极限的许多不同类型的分析物。 该方法基于测量由分子引起的离子通道电导的瞬态降低的能力。 孔中分析物的封锁深度幅度和停留时间用于物理和化学表征它们。 在这里,我们比较乙二醇(PEGS)的柔性线性聚合物和由金黄色葡萄球菌 - 溶血素和AeroMonas疏水液Areolysin形成的纳米孔中柔性线性聚合物和结构明确定义的钨聚甲醛纳米颗粒。 令人惊讶的是,相对刚性金属纳米颗粒的离子电流阻断深度值的方差远大于柔性钉的大大大小,可能是因为多种聚氧化酯簇的带电状态。

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