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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Rapid and alternative fabrication method for microfluidic paper based analytical devices
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Rapid and alternative fabrication method for microfluidic paper based analytical devices

机译:基于微流纸的分析设​​备的快速替代制造方法

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摘要

A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of point-of-care (POC) diagnostics. It is important for POC diagnostics to possess properties such as ease-of-use and low cost. However, mu PADs need multiple instruments and fabrication steps. In this study, two different chemicals (Hexamethyldisilazane and Tetra-ethylorthosilicate) were used, and three different methods (heating, plasma treatment, and microwave irradiation) were compared to develop mu PADs. Additionally, an inkjet-printing technique was used for generating a hydrophilic channel and printing certain chemical agents on different regions of a modified filter paper. A rapid and effective fabrication method to develop mu PADs within 10 min Was introduced using an inkjet-printing technique in conjunction with a microwave irradiation method. Environmental scanning electron microscope (ESEM) and x-ray photoelectron spectroscopy (XPS) were used for morphology characterization and determining the surface chemical compositions of the modified filter paper, respectively. Contact angle measurements were used to fulfill the hydrophobicity of the treated filter paper. The highest contact angle value (141 degrees +/- 1) was obtained using the microwave irradiation method over a period of 7 min, when the filter paper was modified by TEOS. Furthermore, by using this method, the XPS results of TEOS-modified filter paper revealed Si2p (23%) and Si-O bounds (81.55%) indicating the presence of Si-O-Si bridges and Si(OEt) groups, respectively. The ESEM results revealed changes in the porous structures of the papers and decreases in the pore sizes. Washburn assay measurements tested the efficiency of the generated hydrophilic channels in which similar water penetration rates were observed in the TEOS-modified filter paper and unmodified (plain) filter paper. The validation of the developed mu PADs was performed by utilizing the rapid urease test as a model test system. The detection limit of the developed mu PADs was measured as 1 unit ml(-1) urease enzyme in detection zones within a period of 3 min. The study findings suggested that a combination of microwave irradiation with inkjet-printing technique could improve the fabrication method of mu PADs, enabling faster production of mu PADs that are easy to use and cost-effective with long shelf lives. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于微流纸的分析设​​备(mu PAD)的主要应用包括即时诊断(POC)诊断领域。 POC诊断具有易于使用和低成本等特性非常重要。但是,μPAD需要多个仪器和制造步骤。在这项研究中,使用了两种不同的化学药品(六甲基二硅氮烷和原硅酸四乙酯),并比较了三种不同的方法(加热,等离子体处理和微波辐射)来开发μPAD。另外,使用喷墨印刷技术来产生亲水通道并在改性滤纸的不同区域上印刷某些化学试剂。使用喷墨打印技术结合微波辐照方法,引入了一种快速有效的制造方法,以在10分钟内生成mu PAD。环境扫描电子显微镜(ESEM)和X射线光电子能谱(XPS)分别用于形态表征和确定改性滤纸的表面化学组成。接触角测量被用来满足处理过的滤纸的疏水性。当滤纸用TEOS改性时,使用微波辐照方法在7分钟内可获得最高接触角值(141度+/- 1)。此外,通过这种方法,TEOS改性滤纸的XPS结果显示,Si2p(23%)和Si-O结合度(81.55%)分别表明存在Si-O-Si桥和Si(OEt)基团。 ESEM结果揭示了纸的多孔结构的变化和孔径的减小。 Washburn分析测量测试了生成的亲水通道的效率,其中在TEOS改性滤纸和未改性(普通)滤纸中观察到了相似的水渗透率。通过使用快速尿素酶测试作为模型测试系统对开发的mu PAD进行验证。在3分钟内,在检测区域中以1单位ml(-1)尿素酶的形式测量已开发的mu PADs的检出限。研究结果表明,微波辐射与喷墨打印技术的结合可以改善mu PAD的制造方法,从而可以更快地生产mu PAD,这些mu PAD易于使用且具有高成本效益,并且具有较长的保质期。 (C)2016 Elsevier B.V.保留所有权利。

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