Ubiquitous Analytical Techniques Division, CSIR-Central Scientific Instruments Organization (CSIR-CSIO), Chandigarh, 160030, India.
Academy of Scientific and Innovative Research (AcSIR-CSIO), Chandigarh, 160030, India.
Anal Bioanal Chem. 2020 Nov;412(29):8197-8209. doi: 10.1007/s00216-020-02960-7. Epub 2020 Sep 29.
Despite recent advancements in the field of microfluidic paper-based analytical devices (μPADs), a key challenge remains in developing a simple and efficient μPAD with customized imaging capabilities for antioxidant assays. In the present study, we report a facile approach for μPAD fabrication through the application of transparent nail paint leading to creation of hydrophobic barriers and well-defined channels. The resultant μPADs were then characterized through scanning electron microscopy and contact angle measurements. The resolution and functional features of the fabricated μPAD were amenable to the intended assay. The μPAD's impregnated poly(methacrylic acid) (PMAA)-coated cerium oxide (CeO) nanoparticles oxidized the 3,3',5,5'-tetramethylbenzidine (TMB) leading to the formation of a blue-colored charge-transfer complex. The addition of different antioxidant standard solutions resulted in a reduction in the blue color in a dose-dependent manner which could be observed visually. The color intensity of the PMAA-CeO nanoparticle@TMB oxidation product was inversely proportional to the antioxidant concentration and was measured using customized in-house MATLAB-based image processing software. Importantly, PMAA-CeO nanoparticle-based μPADs demonstrated good analytical characteristics and were able to be stored for long periods without any loss of activity. Moreover, potential interferents did not pose any threat to the colorimetric signal read-out for determination of antioxidant activity. The developed method was further applied for the assessment of antioxidant activity in a variety of tea samples and performed satisfactorily in comparison with a commonly used antioxidant detection method. Collectively, the developed μPAD-based platform holds great potential as a low-cost, convenient, portable and reliable method for pursuing various on-site antioxidant assays. Graphical Abstract.
尽管在微流控纸基分析器件(μPAD)领域取得了近期进展,但开发具有定制成像功能的简单高效 μPAD 仍然是一个关键挑战,用于抗氧化剂测定。在本研究中,我们报告了一种通过应用透明指甲漆来制造 μPAD 的简便方法,导致形成疏水区和明确定义的通道。然后通过扫描电子显微镜和接触角测量对所得的 μPAD 进行了表征。制造的 μPAD 的分辨率和功能特征适用于预期的测定。浸渍的 μPAD 的聚(甲基丙烯酸)(PMAA)-涂覆的氧化铈(CeO)纳米颗粒氧化了 3,3',5,5'-四甲基联苯胺(TMB),导致形成蓝色电荷转移络合物。加入不同的抗氧化标准溶液会导致蓝色颜色以剂量依赖的方式减少,这可以通过肉眼观察到。PMAA-CeO 纳米颗粒@TMB 氧化产物的颜色强度与抗氧化剂浓度成反比,并使用定制的内部基于 MATLAB 的图像处理软件进行测量。重要的是,基于 PMAA-CeO 纳米颗粒的 μPAD 表现出良好的分析特性,并且可以长时间储存而不会失去任何活性。此外,潜在的干扰物不会对比色信号读取产生任何威胁,用于测定抗氧化活性。所开发的方法进一步应用于各种茶样品的抗氧化活性评估,并与常用的抗氧化剂检测方法相比表现出令人满意的结果。总之,所开发的基于 μPAD 的平台具有作为低成本,方便,便携和可靠的方法来进行各种现场抗氧化剂测定的巨大潜力。