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Aptamer-based highly sensitive electrochemical detection of thrombin via the amplification of graphene

机译:基于适体的石墨烯扩增对凝血酶的高灵敏度电化学检测

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摘要

Herein, we successfully fabricated a highly sensitive label-free electrochemical aptasensor for thrombin based on the amplification of graphene (Gra). The excellent electrochemical probe of nickel hexacyanoferrate nanoparticles (NiHCFNPs) was introduced to form Nafion-Graphene-NiHCFNPs (Nf-Gra-NiHCFNPs) nanocomposites membrane on the gold electrode. The employment of graphene not only enhanced the surface area of the electrode with increased NiHCFNPs immobilization, but also improved the conductivity of the electrode, which further effectively improved the sensitivity of this proposed aptasensor. Subsequently, AuNPs layer was formed to immobilize the thrombin aptamer (TBA) and enhance the stability of the composite monolayer mentioned above. Then, thiol-modified TBA was assembled onto the AuNPs layer. Thereafter, hexanethiol (HT) was employed to block the possible remaining active sites. With the dual amplification of Gra and AuNPs, the resulting aptasensor exhibited good current response to target thrombin with a wide linear range extended from 1 pM to 80 nM (the detection limit was 0.3 pM). Additionally, the morphologies of bare Au substrate, nickel hexacyanoferrate nanoparticles (NiHCFNPs) and nanocomposites were successfully characterized by atomic force microscopy (AFM).
机译:在本文中,我们基于石墨烯(Gra)的扩增成功地制造了用于凝血酶的高灵敏度,无标记的电化学适体传感器。引入了优良的六氰合铁酸镍纳米粒子(NiHCFNPs)电化学探针,在金电极上形成了Nafion-石墨烯-NiHCFNPs(Nf-Gra-NiHCFNPs)纳米复合膜。石墨烯的使用不仅增加了NiHCFNPs固定化程度,从而增加了电极的表面积,而且还改善了电极的电导率,从而进一步有效地改善了该拟议的适体传感器的灵敏度。随后,形成AuNPs层以固定凝血酶适体(TBA),并增强上述复合单层的稳定性。然后,将硫醇修饰的TBA组装到AuNPs层上。此后,使用己硫醇(HT)封闭可能残留的活性位点。通过Gra和AuNPs的双重扩增,所得的适体传感器对目标凝血酶表现出良好的电流响应,其线性范围从1 pM扩展到80 nM(检测极限为0.3 pM)。此外,通过原子力显微镜(AFM)成功表征了裸金基底,六氰合铁酸镍纳米颗粒(NiHCFNPs)和纳米复合材料的形貌。

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