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pH-Dependent ionic-current-rectification in nanopipettes modified with glutaraldehyde cross-linked protein membranes

机译:用戊二醛交联蛋白膜改性的纳米坯的pH依赖性离子烯化

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In this study, we investigated for the first time the influence of an artificial membrane on the ionic current rectification of nanopipettes at various pH levels. The nanopipettes were fabricated and then modified with bovine serum albumin–glutaraldehyde (BSA–GA) artificial membranes. We determined the degree of ionic current rectification of these nanopipettes and compared them with those of bare nanopipettes. In contrast to the bare nanopipettes, the BSA–GA-modified nanopipettes demonstrated pH-dependent ionic current rectification. We also examined the tunability of the degree of rectification using streptavidin (STV) whose isoelectric point differs from that of BSA. The results showed that the ionic current rectification of nanopipettes can be tuned as the addition of STV into the BSA–GA artificial membrane increases the degree of rectification. Using the proposed approach, nanoscale spearhead pH sensors could be fabricated for highly localized extracellular or intracellular pH measurement. Moreover, it is possible to realize the applications of nano-sized channels in relatively larger channels using the present method.
机译:在这项研究中,我们首次研究了人工膜对各种pH水平纳米坯的离子电流整流的影响。制造纳米坯,然后用牛血清白蛋白 - 戊二醛(BSA-GA)人工膜改性。我们确定了这些纳米坯的离子电流整流程度,并与裸纳米坯的离子进行了比较。与裸纳米普素相比,BSA-GA改性的纳米坯表现出pH依赖性离子电流整流。我们还使用链霉抗生物素蛋白(STV)来检查整流程度的可调谐性,其等电点与BSA的异电点不同。结果表明,纳米坯的离子电流整流可以被调谐,因为将STV添加到BSA-GA人工膜中增加了整流度。使用所提出的方法,可以制造纳米级Spearhead pH传感器以用于高度局部化细胞外或细胞内pH测量。此外,可以使用本方法实现纳米大小信道在相对较大的通道中的应用。

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