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基于丝网印刷碳电极的微型化快速电化学免疫传感器用于检测。

Miniaturized Rapid Electrochemical Immunosensor Based on Screen Printed Carbon Electrodes for Detection.

机构信息

LISA Laboratory, National Applied Science School, Cadi Ayyad University, Marrakech 40000, Morocco.

Moroccan Foundation for Advanced Science, Innovation and Research, Digitalization & Microelectronics Smart Devices Laboratory, Rabat Design Center, Rabat 10112, Morocco.

出版信息

Biosensors (Basel). 2023 May 29;13(6):589. doi: 10.3390/bios13060589.

Abstract

In 2019, over 21% of an estimated 10 million new tuberculosis (TB) patients were either not diagnosed at all or diagnosed without being reported to public health authorities. It is therefore critical to develop newer and more rapid and effective point-of-care diagnostic tools to combat the global TB epidemic. PCR-based diagnostic methods such as Xpert MTB/RIF are quicker than conventional techniques, but their applicability is restricted by the need for specialized laboratory equipment and the substantial cost of scaling-up in low- and middle-income countries where the burden of TB is high. Meanwhile, loop-mediated isothermal amplification (LAMP) amplifies nucleic acids under isothermal conditions with a high efficiency, helps in the early detection and identification of infectious diseases, and can be performed without the need for sophisticated thermocycling equipment. In the present study, the LAMP assay was integrated with screen-printed carbon electrodes and a commercial potentiostat for real time cyclic voltammetry analysis (named as the LAMP-Electrochemical (EC) assay). The LAMP-EC assay was found to be highly specific to TB-causing bacteria and capable of detecting even a single copy of the (Mtb) IS DNA sequence. Overall, the LAMP-EC test developed and evaluated in the present study shows promise to become a cost-effective tool for rapid and effective diagnosis of TB.

摘要

2019 年,在估计的 1000 万结核病(TB)新发病例中,超过 21%的患者要么根本没有被诊断出来,要么没有向公共卫生当局报告就被诊断出来。因此,开发更新、更快、更有效的即时检测诊断工具来对抗全球结核病流行至关重要。基于 PCR 的诊断方法,如 Xpert MTB/RIF,比传统技术更快,但由于需要专门的实验室设备以及在结核病负担高的低收入和中等收入国家扩大规模的高昂成本,其适用性受到限制。同时,环介导等温扩增(LAMP)在等温条件下以高效率扩增核酸,有助于早期检测和识别传染病,并且可以在不需要复杂热循环设备的情况下进行。在本研究中,将 LAMP 检测与丝网印刷碳电极和商业电化学工作站集成,用于实时循环伏安法分析(命名为 LAMP-电化学(EC)检测)。发现 LAMP-EC 检测对引起结核病的细菌具有高度特异性,甚至能够检测到单个 MtbIS 序列的 DNA 拷贝。总体而言,本研究中开发和评估的 LAMP-EC 检测有望成为一种经济有效的快速有效诊断结核病的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa97/10296126/7b96deac7a75/biosensors-13-00589-g001.jpg

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