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用于便携式免疫分析应用的三维折纸纸基器件。

Three-dimensional origami paper-based device for portable immunoassay applications.

机构信息

Institute of Applied Mechanics, National Taiwan University, Taipei 106, Taiwan.

出版信息

Lab Chip. 2019 Feb 12;19(4):598-607. doi: 10.1039/c8lc01255e.

Abstract

In this study, we demonstrate a three-dimensional surface-modified origami-paper-based analytical device (3D-soPAD) for immunoassay applications. The platform enables the sequential steps of immunoassays to be easily performed using a folded, sliding paper design featuring multiple pre-stored reagents, allowing us to take advantage of the vertical diffusion of the analyte through the different paper layers. The cellulose substrate is composed of carboxymethyl cellulose modified with N-(3-dimethylaminopropyl)-N'-ethylcarbodiimide hydrochloride and N-hydroxysuccinimide, which provide covalent bonding sites for bio-recognition molecules. After the optimization of the operation parameters, we determined the detection limit of the 3D-soPAD for human immunoglobulin G (HIgG) which can be as low as 0.01 ng mL-1, with a total turnaround time of 7 min. In order to study the long-term storage of the platform, anti-HIgG horseradish peroxidase (aHIgG-HRP) conjugates were stored by freeze-drying in sugar matrices composed of 10% sucrose/10% trehalose (w/w%) on the paper device, retaining 80% of their activity after 75 days of storage at 4 °C. To evaluate the performance of the paper device using real samples, we demonstrated the detection of protein A (a biomarker for Staphylococcus aureus infection) in highly viscous human synovial fluid. These results show that the proposed 3D-soPAD platform can provide sensitive, high-throughput, and on-site prognosis of infection in resource-limited settings.

摘要

在本研究中,我们展示了一种用于免疫分析应用的三维表面修饰折纸纸基分析器件(3D-soPAD)。该平台采用折叠、滑动纸设计,具有多个预存储试剂,可轻松实现免疫分析的连续步骤,使我们能够利用分析物通过不同纸层的垂直扩散。纤维素基底由羧甲基纤维素与 N-(3-二甲氨基丙基)-N'-乙基碳二亚胺盐酸盐和 N-羟基琥珀酰亚胺改性而成,为生物识别分子提供了共价键合位点。在优化操作参数后,我们确定了 3D-soPAD 对人免疫球蛋白 G(HIgG)的检测限低至 0.01 ng mL-1,总检测时间为 7 分钟。为了研究平台的长期储存性能,通过在含有 10%蔗糖/10%海藻糖(w/w%)的糖基质中冷冻干燥将辣根过氧化物酶(aHIgG-HRP)偶联物储存在纸器件上,在 4°C 下储存 75 天后,其活性保留了 80%。为了使用真实样品评估纸器件的性能,我们证明了在高粘性人滑液中检测蛋白质 A(金黄色葡萄球菌感染的生物标志物)的能力。这些结果表明,所提出的 3D-soPAD 平台可以在资源有限的环境中提供敏感、高通量和现场感染预后。

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