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首页> 外文期刊>Materials science & engineering >A comparison of the performance of voltammetric aptasensors for glycated haemoglobin on different carbon nanomaterials-modified screen printed electrodes
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A comparison of the performance of voltammetric aptasensors for glycated haemoglobin on different carbon nanomaterials-modified screen printed electrodes

机译:不同碳纳米材料改性丝网印刷电极糊化血红蛋白伏安血红蛋白的性能的比较

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The integration of carbon nanomaterials into electrochemical aptasensors has gained significant interest in the recent years because of their high electrical conductivity, mechanical strength, and large surface area. However, no comparative study has been reported so far between different carbon nanomaterials for aptasensing applications. Here, we report, a comparative investigation of six carbon electrode materials (carbon, graphene (G), graphene oxide (GO), multi-wall carbon nanotube (MWCNT), single walled carbon nanotube (SWCNT) and carbon nanofiber (CNF)) on the performance of glycated haemoglobin (HbA1c) aptasensor prepared by physical adsorption. The aptamers were non-covalently immobilized on the six nanomaterial electrodes via pi-pi stacking interactions between the DNA nucleobases and the surface of the carbon material which creates a barrier to the electron transfer. However, upon binding of the target protein to the aptamer, the aptamer dissociates from the surface leading to enhancement of the electron transfer which represent the basis of the detection. The aptamer adsorption, sensors responses and selectivity of the different nanomaterials were compared showing better performance of the SWCNT-based sensor. The voltammetric SWCNT aptasensors showed high sensitivity and selectivity with detection limits of 0.13 pg/mL and 0.03 pg/mL for total haemoglobin (tHb) and HbA1c, respectively. The aptasensor showed selectivity against other proteins in the blood including cystic fibrosis transmembrane conductance regulator (CFTR), survival motor neuron (SMN), dedicator of cytokinesis 8 (DOCK8), signal transducer and activator of transcription 3 (STAT3). This SWCNT aptasensor was superior to the reported detection assays for HbAlc in terms of sensitivity, selectivity and cost. Moreover, our results demonstrate that the choice of the carbon nanomaterial can have a profound impact on the biosensing performance.
机译:碳纳米物质将碳纳米物质与电化学Aptasensors的整合在近年来的近年来的显着兴趣,因为它们具有高导电性,机械强度和大表面积。然而,到目前为止在不同的碳纳米材料之间没有报道比较研究,用于APTasening应用。在此,我们报告,对六种碳电极材料(碳,石墨烯(G),氧化石墨烯(GO),多壁碳纳米管(MWCNT),单壁碳纳米管(SWCNT)和碳纳米纤维(CNF)的比较研究论物理吸附制备的糖化血红蛋白(HBA1C)Aptasensor的性能。通过DNA核碱基与碳材料的表面之间的PI-PI堆叠相互作用,在六个纳米材料电极上非共价固定在六个纳米材料上,这是对电子转移产生阻挡的相互作用。然而,在将靶蛋白结合到适体中,Aptamer从表面中解离,导致代表检测基础的电子转移的增强。比较适体吸附,传感器的反应和不同纳米材料的选择性,显示出基于SWCNT的传感器的更好性能。伏安SWCNT Aptasensors分别显示出高灵敏度和选择性,具有0.13pg / ml的检测限,对于总血红蛋白(THB)和HBA1c分别为0.13pg / ml和0.03pg / ml。 Aptasensor显示对血液中其他蛋白质的选择性,包​​括囊性纤维化跨膜电导调节剂(CFTR),存活电机神经元(SMN),细胞因子8(DOCK8)的特殊剂,信号传感器和转录3(STAT3)的激活剂。在灵敏度,选择性和成本方面,该SWCNT Aptasensor优于报告的HBALC检测测定。此外,我们的结果表明,碳纳米材料的选择可以对生物传感性能产生深远的影响。

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