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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 >Electrochemical aptasensor using optimized surface chemistry for the detection of Mycobacterium tuberculosis secreted protein MPT64 in human serum
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Electrochemical aptasensor using optimized surface chemistry for the detection of Mycobacterium tuberculosis secreted protein MPT64 in human serum

机译:使用优化的表面化学来检测人血清中分枝杆菌分泌蛋白质MPT64的电化学Aptasensor

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摘要

Tuberculosis (TB) remains one of the leading causes of mortality worldwide. There is a great need for the development of diagnostic tests, which are reliable, sensitive, stable, and low cost to enable early diagnosis of TB in communities with scarce resources. This study reports the optimization and evaluation of a synthetic receptor, an aptamer, for the detection of the secreted protein MPT64, which is a highly immunogenic polypeptide of Mycobacterium tuberculosis, a causative agent of TB. The study investigates combinatorial effects of an aptamer linker and a co-adsorbent onto a gold electrode for optimal binding efficiency and reduced non-specific interactions for label-free detection of MPT64 using electrochemical impedance spectroscopy. Two types of co-adsorbents and two types of aptamer linkers were studied and high specificity and sensitivity to MPT64 was observed for a surface prepared with a thiol PEGylated aptamer HS-(CH2)(6)-OP(O)(2)O-(CH2CH2O)(6)-TTTTT-aptamer and 6-mercaptohexanol in a ratio of 1:100. The developed aptamer-based sensor was successfully used with spiked human serum sample with a limit of detection of 81 pM This work demonstrates the use of the MPT64 aptamer as a lower cost, more sustainable and stable alternative of antibodies for the development of point-of-care TB biosensors decreasing the detection time from several days or hours to thirty minutes.
机译:结核病(TB)仍然是全世界死亡率的主要原因之一。有很大的需要开发诊断测试,可靠,敏感,稳定和低成本,使得在稀缺资源中的社区中的早期诊断。该研究报告了合成受体,适体,用于检测分泌的蛋白质MPT64的优化和评价,其是结核分枝杆菌的高度免疫原性多肽,是TB的致病剂。该研究研究了适体接头和共吸附剂在金电极上的组合效应,以获得使用电化学阻抗光谱对MPT64无特异性的无特异性相互作用。研究了两种类型的共吸收剂和两种类型的适体接头,并观察到用硫醇聚乙二醇化适体HS-(CH2)(6)-OP(O)(2)O-制备的表面对MPT64的高特异性和对MPT64的敏感性。 (CH2CH2O)(6) - 以1:100的比例为-TTTT-APTamer和6-巯己醇。已开发的基于Aptamer的传感器与尖刺人血清样品一起使用,其检测限为81 PM,这项工作显示使用MPT64适体作为较低的成本,更可持续和稳定的抗体的抗体的开发的抗体的开发-Care TB生物传感器从几天或小时到30分钟降低检测时间。

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