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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >An electrochemiluminescence cloth-based biosensor with smartphone-based imaging for detection of lactate in saliva
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An electrochemiluminescence cloth-based biosensor with smartphone-based imaging for detection of lactate in saliva

机译:基于电化学发光布的生物传感器,具有基于智能手机的成像,用于检测唾液中的乳酸

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摘要

Cloth fabrics and smartphones have become the two things people are most familiar with. Particularly, smartphones are used as portable personal computers, revolutionizing communication and lifestyle. Here, screen-printing technology is applied to fabricate carbon electrodes and electrochemical chambers on a single hydrophilic cloth, while the cloth-based electrochemiluminescence (ECL) signals are read out by using an inexpensive smartphone. Therefore, the ECL detection is available in both low-cost disposable sensors and a portable format, which may be very suitable to be used as a non-invasive monitoring tool for medical diagnostics. As a proof-of-principle, lactate oxidase is immobilized onto the working electrode for the lactate measurement. Under optimized conditions, the lactate levels can be quantified over the range of 0.05-2.5 mM, with a detection limit of 0.035 mM and the relative standard deviations of 4.7%, 5.2% and 5.0% for 0.05, 0.5 and 2.5 mM lactate (n = 5). In addition, the proposed biosensor has an acceptable stability and selectivity. Finally, the ECL biosensor is successfully applied for the determination of lactate in human saliva. These results show that the presented ECL platform has the potential to be applied to non-invasively detect a variety of analytes of medical interest.
机译:布料织物和智能手机已成为人们最熟悉的两件事。特别是,智能手机用作便携式个人计算机,彻底改变沟通和生活方式。这里,将丝网印刷技术应用于在单个亲水布上制造碳电极和电化学腔室,而通过使用廉价的智能手机读出布料的电化学发光(ECL)信号。因此,ECL检测可用于低成本一次性传感器和便携式格式,这可能非常适合用作医疗诊断的非侵入性监测工具。作为原则证据,将乳酸氧化酶固定在工作电极上以进行乳酸测量。在优化条件下,乳酸水平可以量化在0.05-2.5mm的范围内,检出限为0.035mm,相对标准偏差为4.7%,5.2%和5.0%,乳酸乳酸乳酸(0.5和2.5mm = 5)。此外,所提出的生物传感器具有可接受的稳定性和选择性。最后,ECL生物传感器已成功应用于人唾液中乳酸的测定。这些结果表明,所呈现的ECL平台有可能应用于非侵入性地检测医学兴趣的各种分析。

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