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Fabrication of paper-based analytical devices optimized by central composite design

机译:由中央复合设计优化的纸纸分析装置的制造

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摘要

In this work, an application of a design of experiments approach for the optimization of an isoniazid assay on a single-area inkjet-printed paper-based analytical device (PAD) is described. For this purpose, a central composite design was used for evaluation of the effect of device geometry and amount of assay reagents on the efficiency of the proposed device. The factors of interest were printed length, width, and sampling volume as factors related to device geometry, and amounts of the assay reagents polyvinyl alcohol (PVA), NH4OH, and AgNO3. Deposition of the assay reagents was performed by a thermal inkjet printer. The colorimetric assay mechanism of this device is based on the chemical interaction of isoniazid, ammonium hydroxide, and PVA with silver ions to induce the formation of yellow silver nanoparticles (AgNPs). The in situ-formed AgNPs can be easily detected by the naked eye or with a simple flat-bed scanner. Under optimal conditions, the calibration curve was linear in the isoniazid concentration range 0.03-10 mmol L-1 with a relative standard deviation of 3.4% (n = 5 for determination of 1.0 mmol L-1). Finally, the application of the proposed device for isoniazid determination in pharmaceutical preparations produced satisfactory results.
机译:在这项工作中,描述了在单区域喷墨印刷纸基分析装置(焊盘)上优化实验方法的应用方法的应用。为此目的,中央复合设计用于评估器件几何形状和测定试剂量对所提出的装置的效率的影响。感兴趣的因素是印刷的长度,宽度和采样量,作为与装置几何形状相关的因素,以及测定试剂聚乙烯醇(PVA),NH 4 OH和AgNO3的量。测定试剂的沉积通过热喷墨打印机进行。该装置的比色测定机理基于异噻唑,氢氧化铵和具有银离子的PVA的化学相互作用,以诱导黄色银纳米颗粒(AgNP)的形成。肉眼或用简单的平板扫描仪可以容易地检测到原位形成的agnps。在最佳条件下,校准曲线在异基浓度范围内为0.03-10mmol L-1的线性,相对标准偏差为3.4%(n = 5,用于测定1.0mmol L-1)。最后,药物制剂中提出的拟议装置的应用产生了令人满意的结果。

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