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Direct DNA hybridization at disposable graphite electrodes modified with carbon nanotubes

机译:用碳纳米管修饰的一次性石墨电极上的直接DNA杂交

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摘要

The performance of glassy carbon ( GCE) and graphite pencil electrodes (PGE) modified with multiwalled carbon nanotubes (CNTs) are compared, based on the direct electrochemical detection of nucleic acids. This is accomplished by monitoring the differential pulse voltammetry changes of the guanine signal. CNT-modified PGE compares favorably to that of the commonly used CNT-modified GCE owing to the intrinsic improved performance of the supporting PGE. The better intrinsic characteristics of the PGE are related to its composite structure and higher level of porosity compared to GCE. The performance characteristics of the direct DNA hybridization on the disposable CNT-modified PGE are studied in terms of optimum analytical conditions such as probe concentration, target concentration, hybridization time, and selectivity. The new DNA biosensor described here has shown some important advantages such being inexpensive, sensitive, selective, and able to generate reproducible results using a simple and direct electrochemical protocol.
机译:基于核酸的直接电化学检测,比较了玻璃碳(GCE)和用多壁碳纳米管(CNT)改性的石墨笔电极(PGE)的性能。这是通过监测鸟嘌呤信号的差分脉冲伏安法变化来实现的。 CNT改性的PGE由于支持的PGE的内在的改善的性能而与常用的CNT改性的GCE相比有利。与GCE相比,PGE更好的固有特性与其复合结构和更高的孔隙率有关。根据最佳分析条件,如探针浓度,靶标浓度,杂交时间和选择性,研究了在一次性CNT修饰的PGE上直接DNA杂交的性能特征。这里描述的新型DNA生物传感器已经显示出一些重要的优势,例如便宜,灵敏,选择性强,并且能够使用简单直接的电化学方案产生可重复的结果。

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