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首页> 外文期刊>Sensors and Actuators >ALS genosensing using DNA-hybridization electrochemical biosensor based on label-free immobilization of ssDNA on Sm_2O_3 NPs-rGO/PANI composite
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ALS genosensing using DNA-hybridization electrochemical biosensor based on label-free immobilization of ssDNA on Sm_2O_3 NPs-rGO/PANI composite

机译:基于无标记固定ssDNA在Sm_2O_3 NPs-rGO / PANI复合材料上的DNA杂交电化学生物传感器进行ALS基因传感

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摘要

A DNA-hybridization electrochemical biosensor (DNA-HEB) has been developed using a new platform for immobilization of a 20-mer oligonucleotide. In a DNA-HEB, the signal is produced based on hybridization of a probe and its target sequence. DNA-HEB can be a cost-effective techniques be able to be miniaturized. The selected DNA sequence is related to a gene sequence encoding the Cu-Zn superoxide dismutase enzyme (SOD1) which is important in familial Amyotrophic lateral sclerosis (ALS) disease. Tris(bipyridine)ruthenium(II) chloride was utilized as an electroactive probe to detect the interactions of ssDNA and dsDNA on the electrode surface indirectly. Modifying a glassy carbon electrode with polyaniline and samarium oxide nanoparticles decorated reduced graphene oxide composite, provided a matrix for a lable-free immobilization of ssDNA and enhanced the sensor signal obtained from Fast Fourier Transform square wave voltammetry (FFT-SWV). The studies showed a good dynamic response range from 1 × 10−13to 1 × 10−8mol L-1for the proposed sequence SOD1.
机译:DNA杂交电化学生物传感器(DNA-HEB)已使用固定20个寡核苷酸的新平台开发。在DNA-HEB中,信号是基于探针及其靶序列的杂交产生的。 DNA-HEB可以是一种经济高效的技术,可以使其小型化。所选的DNA序列与编码Cu-Zn超氧化物歧化酶(SOD1)的基因序列有关,该酶在家族性肌萎缩性侧索硬化症(ALS)疾病中很重要。氯化三(联吡啶)钌(II)作为电活性探针可间接检测电极表面上ssDNA和dsDNA的相互作用。用聚苯胺和氧化mar纳米粒子修饰玻碳电极修饰的还原型氧化石墨烯复合物,为无标签固定化ssDNA提供了基质,并增强了从快速傅立叶变换方波伏安法(FFT-SWV)获得的传感器信号。研究表明,拟议序列SOD1具有良好的动态响应范围,从1××10-13到1××10-8mol L-1。

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