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 >Enhanced 3D paper-based devices with a personal glucose meter for highly sensitive and portable biosensing of silver ion
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Enhanced 3D paper-based devices with a personal glucose meter for highly sensitive and portable biosensing of silver ion

机译:具有个人葡萄糖仪的增强型3D纸型器件,用于非常敏感和便携式的银离子生物沉积

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A variety of routine methods are available for the detection of silver (I) (Ag+) ions, but most of them rely on expensive, sophisticated and desktop instruments. Herein, a low-cost, instrument-free and portable Ag+ biosensor was described by initially designing a new class of 3D origami microfluidic paper-based analytical devices (mu PADs) into each of which one piece of reagent-loaded nanoporous membrane was integrated. It combines analyte-triggered self-growing of silver nanoparticles to block the membranes pores in situ for rapid yet efficient signal amplification with a handheld personal glucose meter for a portable and sensitive quantitative readout based on the biocatalytic reactions between the glucose oxidase and glucose. Its utility is well demonstrated with the specific detection of the analyte with a limit of detection as low as similar to 58.1 pM (3 sigma), which makes this new biosensing method one of the most sensitive Ag+ assays in comparison with many other typical methods recently reported. Moreover, the satisfactory recovery of analyzing several types of real water examples, i.e., tap water, drinking water, pond water and soil water, additionally validates its feasibility for practical applications.
机译:各种常规方法可用于检测银(I)(Ag +)离子,但大多数依赖于昂贵的精密和桌面仪器。这里,通过最初将新的3D折纸微流体纸的分析装置(MU垫)初始设计到其中一体的一种试剂负载的纳米多孔膜,通过一体的3D折纸微流体纸 - 其中一体化的纳米多孔膜来描述低成本,无乐器和便携式AG +生物传感器。它将分析物触发的银纳米颗粒的自我生长结合在原位上阻断膜孔,用于基于葡萄糖氧化酶和葡萄糖之间的生物催化反应的便携和敏感定量读出的手持式个人血糖仪进行快速且有效的信号放大。其实用性很好地证明了分析物的特异性检测,其检测的极限与58.1MM(3Σ)相似,这使得这种新的生物传感方法是最近的许多其他典型方法的最敏感的AG +测定方法报道。此外,分析几种实际水实例的令人满意的恢复,即自来水,饮用水,池塘水和土壤水分,另外验证其对实际应用的可行性。

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