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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Affinity sensor for haemoglobin A1c based on single-walled carbon nanotube field-effect transistor and fructosyl amino acid binding protein
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Affinity sensor for haemoglobin A1c based on single-walled carbon nanotube field-effect transistor and fructosyl amino acid binding protein

机译:基于单壁碳纳米管场效应晶体管和果糖氨基酸结合蛋白的血红蛋白A1C的亲和传感器

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摘要

Haemoglobin A1c (HbA1c) is a significant glycaemic marker for diabetes mellitus. The level of HbA1c reflects the mean blood glucose level over the prior 2-3 months and it is useful for the assessment of therapeutic effectiveness and for diagnosis. In this study, we report the label-free affinity sensor for HbA1c based on the chemiresistor-type field-effect transistor, which has a simple sensor configuration. Single-walled carbon nano tubes (SWNTs) were used as the transducing element. The fructosyl amino acid binding protein from Rhizobiwn radiobacter (SocA), which binds to a-fructosyl amino acid specifically, was used as the biorecognition element for fructosyl valine (FV), the product of the proteolytic hydrolysis of HbA1c. The developed sensor shows the ability to measure as low as L2 nM FV, which is 14-fold more sensitive compared to the previously reported fluorescence -based sensor using SocA. This sensor also exhibits high specificity where no significant response is observed from either fructosyl lysine (FK) or glucose, which are potential interferents. FK is the alpha-fructosyl amino acid from glycated albumin, another glycated protein, whereas glucose is naturally present at very high concentration in the blood. We propose that the modulation of the surface charges on the SWNTs caused by the conformational change in SocA upon ligand binding leads to the proportionate changes in the number of carriers in the SWNT channel.
机译:血红蛋白A1C(HBA1C)是糖尿病的显着血糖标志物。 HBA1C的水平反映了过去2-3个月的平均血糖水平,可用于评估治疗效果和诊断。在这项研究中,我们报告了基于Chemiresistor型场效应晶体管的HBA1C的无标签亲和力传感器,其具有简单的传感器配置。单壁碳纳米管(SWNT)用作转换元件。来自RhizobiWN辐射杆菌(SOCA)的果糖氨基酸结合蛋白特别结合的果糖酰氨基酸,用作果糖烷基缬氨酸(Fv)的生物识别元件,HBA1c的蛋白水解水解产物。开发的传感器显示了与使用SOCA先前报告的荧光的传感器相比测量低至L2NM FV的低至L2NM FV的能力。该传感器还表现出高特异性,其中从果糖溶赖氨酸(FK)或葡萄糖无明显反应,这是潜在的干扰。 FK是来自糖化白蛋白的α-果糖氨基酸,另一种糖化蛋白质,而葡萄糖自然存在于血液中非常高的浓度。我们提出,在配体结合时,由SOCA的构象变化引起的SWNT上的表面电荷导致SWNT通道中载体数量的比例变化。

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