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 >Selection of a new Mycobacterium tuberculosis H37Rv aptamer and its application in the construction of a SWCNT/aptamer/Au-IDE MSPQC H37Rv sensor
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Selection of a new Mycobacterium tuberculosis H37Rv aptamer and its application in the construction of a SWCNT/aptamer/Au-IDE MSPQC H37Rv sensor

机译:选择新的结核分枝杆菌H37RV适体及其在SWCNT / Aptamer / Au-IDE MSPQC H37RV传感器构建中的应用

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摘要

A rapid and accurate detection method for Mycobacterium tuberculosis (M. tuberculosis) is essential for effectively treating tuberculosis. However, current detection methods cannot meet these clinical requirements because the methods are slow or of low specificity. Consequently, a new highly specific ssDNA aptamer against M. tuberculosis reference strain H37Rv was selected by using the whole-cell systematic evolution of ligands by exponential enrichment technique. The selected aptamer was used to construct a fast and highly specific H37Rv sensor. The probe was produced by immobilizing thiol-modffied aptamer on an Au interdigital electrode (Au-IDE) of a multichannel series piezoelectric quartz crystal (MSPQC) through Au-S bonding, and then single walled carbon nanotubes (SWCNTs) were bonded on the aptamer by pi-pi stacking. SWCNTs were used as a signal indicator because of their considerable difference in conductivity compared with H37Rv. When H37Rv is present, it replaces the SWCNTs because it binds to the aptamer much more strongly than SWCNTs do. The replacement of SWCNTs by H37Rv resulted in a large change in the electrical properties, and this change was detected by the MSPQC. The proposed sensor is highly selective and can distinguish H37Rv from Mycobacterium smegmatis (M. smegmatis) and Bacillus Calmette-Guerin vaccine (BCG). The detection time was 70 min and the detection limit was 100 cfu/mL. Compared with conventional methods, this new SWCNT/aptamer/Au-IDE MSPQC H37Rv sensor was specific, rapid, and sensitive, and it holds great potential for the early detection of H37Rv in clinical diagnosis.
机译:对结核分枝杆菌(肺结核)的快速和准确的检测方法对于有效治疗结核病至关重要。然而,电流检测方法不能满足这些临床要求,因为这些方法是缓慢的或特异性低。因此,通过指数富集技术使用配体的全细胞系统演化来选择针对微结核病参考菌株H37RV的新的高度特异性SSDNA适体。所选适体用于构建快速且高度的H37RV传感器。通过通过AU-S粘合将硫醇型压电电极(Au-IDE)固定在多通道串联压电石英晶体(MSPQC)的Au叉指电极(Au-IDE)上的硫醇 - 模拟电极(Au-IDE)上制备探针,然后在适体粘合单壁碳纳米管(SWCNT)通过pi-pi堆叠。与H37RV相比,SWCNT用作信号指示器,因为它们的电导率相当差异。当存在H37RV时,它取代了SWCNT,因为它比SWCNT更强烈地绑定到APTamer。通过H37RV更换SWCNT,导致电性能大变化,并且MSPQC检测到该变化。所提出的传感器具有高度选择性,可以区分H37RV从分枝杆菌(M. Smogmatis)和芽孢杆菌钙凝集引导疫苗(BCG)中的H37RV。检测时间为70分钟,检测限为100 cfu / ml。与常规方法相比,这种新的SWCNT /适体/ AU-IDE MSPQC H37RV传感器是特异性的,快速和敏感,并且它具有临床诊断中早期检测H37RV的巨大潜力。

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