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Electric field effects on adsorption/desorption of proteins and colloidal particles on a gold film observed using surface plasmon resonance

机译:使用表面等离子体激元共振观察到电场对金膜上蛋白质和胶体颗粒吸附/解吸的影响

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We present results for the enhancement or retardation of the attachment of the protein soybean peroxidase to a gold substrate using electric fields. We detect the influence of the electric fields on the proteins using the surface plasmon resonance phenomenon. The gold surface on which the surface plasmon resonance is generated also acts as one of the electrodes required to apply the electric field. The second electrode has a semi-insulating layer that limits current flow, and limits electrolysis effects. The results show that at pH 7, when the soybean peroxidase is negatively charged, a greatly enhanced deposition of protein is obtained when a positive potential is applied to the gold electrode. A negative potential can inhibit protein attachment, or reduce the amount of protein attached; however, after repeated applications of a positive potential, a negative potential has little effect. Results are presented of experiments using colloidal silica that has negatively charged particles of similar size to soybean peroxidase, showing the attraction and repulsion of negatively charged particles by the gold surface.
机译:我们提出了使用电场将蛋白质大豆过氧化物酶与金基质附着或增强的结果。我们使用表面等离子体共振现象检测电场对蛋白质的影响。在其上产生表面等离子体激元共振的金表面还充当施加电场所需的电极之一。第二电极具有限制电流流动并限制电解作用的半绝缘层。结果表明,在pH值为7时,当大豆过氧化物酶带负电时,当将正电势施加到金电极上时,可获得大大增强的蛋白质沉积。负电位可以抑制蛋白质附着,或减少蛋白质附着量。然而,在重复施加正电位之后,负电位几乎没有影响。给出了使用胶体二氧化硅的实验结果,该胶体二氧化硅具有与大豆过氧化物酶相似大小的带负电荷的颗粒,显示了带负电荷的颗粒被金表面吸引和排斥。

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