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低成本、安全、一次性、快速且自持续的纸基诊断检测平台:纸上实验室。

A low cost, safe, disposable, rapid and self-sustainable paper-based platform for diagnostic testing: lab-on-paper.

机构信息

CENIMAT/I3N, Departamento de Ciência dos Materiais, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Campus de Caparica, 2829-516 Caparica, Portugal.

出版信息

Nanotechnology. 2014 Mar 7;25(9):094006. doi: 10.1088/0957-4484/25/9/094006. Epub 2014 Feb 12.

Abstract

There is a strong interest in the use of biopolymers in the electronic and biomedical industries, mainly towards low-cost applications. The possibility of developing entirely new kinds of products based on cellulose is of current interest, in order to enhance and to add new functionalities to conventional paper-based products. We present our results towards the development of paper-based microfluidics for molecular diagnostic testing. Paper properties were evaluated and compared to nitrocellulose, the most commonly used material in lateral flow and other rapid tests. Focusing on the use of paper as a substrate for microfluidic applications, through an eco-friendly wax-printing technology, we present three main and distinct colorimetric approaches: (i) enzymatic reactions (glucose detection); (ii) immunoassays (antibodies anti-Leishmania detection); (iii) nucleic acid sequence identification (Mycobacterium tuberculosis complex detection). Colorimetric glucose quantification was achieved through enzymatic reactions performed within specific zones of the paper-based device. The colouration achieved increased with growing glucose concentration and was highly homogeneous, covering all the surface of the paper reaction zones in a 3D sensor format. These devices showed a major advantage when compared to the 2D lateral flow glucose sensors, where some carryover of the coloured products usually occurs. The detection of anti-Leishmania antibodies in canine sera was conceptually achieved using a paper-based 96-well enzyme-linked immunosorbent assay format. However, optimization is still needed for this test, regarding the efficiency of the immobilization of antigens on the cellulose fibres. The detection of Mycobacterium tuberculosis nucleic acids integrated with a non-cross-linking gold nanoprobe detection scheme was also achieved in a wax-printed 384-well paper-based microplate, by the hybridization with a species-specific probe. The obtained results with the above-mentioned proof-of-concept sensors are thus promising towards the future development of simple and cost-effective paper-based diagnostic devices.

摘要

人们对生物聚合物在电子和生物医学行业中的应用有着浓厚的兴趣,主要是针对低成本的应用。基于纤维素开发全新种类产品的可能性是当前的研究热点,这旨在增强和赋予传统基于纸张的产品新的功能。我们介绍了我们在基于纸张的微流控分子诊断检测方面的研究成果。我们评估了纸张的性能,并与在侧向流动和其他快速检测中最常用的材料硝化纤维素进行了比较。本研究聚焦于使用纸张作为微流控应用的基底,通过一种环保的蜡印技术,我们提出了三种主要且不同的比色方法:(i)酶反应(葡萄糖检测);(ii)免疫分析(抗利什曼原虫抗体检测);(iii)核酸序列鉴定(结核分枝杆菌复合群检测)。通过在基于纸张的装置的特定区域内进行的酶反应实现了葡萄糖的比色定量检测。颜色的深浅随着葡萄糖浓度的增加而增加,并且高度均匀,在 3D 传感器的格式下覆盖了纸张反应区的整个表面。与 2D 侧向流动葡萄糖传感器相比,这些设备具有明显的优势,因为在后者中通常会发生一些带色产物的转移。使用基于纸张的 96 孔酶联免疫吸附测定格式概念上实现了犬血清中抗利什曼原虫抗体的检测。然而,对于该检测,仍需要对抗原在纤维素纤维上的固定效率进行优化。通过使用非交联金纳米探针检测方案,在蜡印的 384 孔基于纸张的微板上也实现了结核分枝杆菌核酸的检测。通过与种特异性探针杂交,获得了上述概念验证传感器的结果,这为未来开发简单且具有成本效益的基于纸张的诊断设备提供了希望。

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