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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Label-free aptamer biosensor for thrombin detection on a nanocomposite of graphene and plasma polymerized allylamine
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Label-free aptamer biosensor for thrombin detection on a nanocomposite of graphene and plasma polymerized allylamine

机译:用于石墨烯和等离子体聚合的烯丙胺纳米复合物上凝血酶检测的无标记适体生物传感器

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摘要

A label-free and effective aptasensor based on an amino-functionalized nanocomposite of graphene and plasma-polymerized allylamine (G-PPAA) was developed for thrombin detection. Graphene was assembled on the substrate, followed by the self-assembly of octadecylamine (OTA) to protect the graphene from etching by subsequent plasma irradiation. Afterward, PPAA was deposited onto the graphene surface with the self-assembled OTA, and the nanocomposite with amino groups was fabricated. The label-free thrombin aptamer was immobilized onto the amino-functionalized nanocomposite matrix via electrostatic interaction between the phosphate groups of the aptamer and the amino groups in PPM. The process was investigated using impedimetric detection and a quartz crystal microbalance (QCM). The chemical compositions, surface morphology, and electrochemical properties were found to be dependent on the plasma conditions used in the polymer deposition. The amounts and kinetics of aptamer immobilization and thrombin detection were determined using QCM measurements. A relatively high affinity constant of aptamer immobilization and low detection limit for thrombin were achieved by using the G-PPAA film as the biosensor matrix. Results suggest that G-PPAA films can be applied in gene therapy and protein detection.
机译:基于凝血酶的氨基官能化纳米复合材料和等离子体聚合的烯丙胺(G-PPAA),开发了一种无标记且有效的适体传感器。将石墨烯组装在基板上,然后进行十八烷基胺(OTA)的自组装,以保护石墨烯免于被随后的等离子体辐射腐蚀。然后,用自组装的OTA将PPAA沉积在石墨烯表面上,并制备了具有氨基的纳米复合材料。通过所述适体的磷酸基团和PPM中的氨基之间的静电相互作用,将无标记的凝血酶适体固定在氨基官能化的纳米复合材料基质上。使用阻抗检测和石英晶体微量天平(QCM)研究了该过程。发现化学组成,表面形态和电化学性质取决于聚合物沉积中使用的等离子体条件。使用QCM测量确定适体固定和凝血酶检测的量和动力学。通过使用G-PPAA膜作为生物传感器基质,可以获得适度较高的适体固定亲和常数和较低的凝血酶检出限。结果表明,G-PPAA膜可用于基因治疗和蛋白质检测。

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