School of Engineering and Technology, University of Hertfordshire, College Lane, Hatfield AL10 9AB, United Kingdom.
School of Engineering and Technology, University of Hertfordshire, College Lane, Hatfield AL10 9AB, United Kingdom; Dstl Porton Down, Salisbury, Wiltshire SP4 0JQ, United Kingdom.
Biosens Bioelectron. 2019 Mar 1;128:52-60. doi: 10.1016/j.bios.2018.12.014. Epub 2018 Dec 18.
With the tangible threat posed by the release of chemical and biological warfare (CBW) agents, detection of airborne pathogens is a critical military and security concern. Recent air sampling techniques developed for biocollection take advantage of Electrowetting on Dielectric (EWOD) to recover material, producing highly concentrated droplet samples. Bespoke EWOD-based digital microfluidics platforms are very well suited to take full advantage of the microlitre concentrated droplet resulting from this recovery process. In this paper we present a free-standing, fully automated DMF platform for immunoassay. Using this system, we demonstrate the automated detection of four classes of CBW agent simulant biomolecules and organisms each representing credible threat agents. Taking advantage of the full magnetic separation process with antibody-bound microbeads, rapid and complete separation of specific target antigen can be achieved with minimal washing steps allowing for very rapid detection. Here, we report clear detection of four categories of antigens achieved with assay completion times of between six and ten minutes. Detection of HSA, Bacillus atrophaeus (BG spores), MS2 bacteriophage and Escherichia coli are demonstrated with estimated limit of detection of respectively 30 ng ml, 4 × 10 cfu ml, 10 pfu ml and 2 × 10 cfu ml. The fully-integrated portable platform described in this paper is highly compatible with the next generation of electrowetting-coupled air samplers and thus shows strong potential toward future in-field deployable biodetection systems and could have key implication in life-changing sectors such as healthcare, environment or food security.
随着化学和生物战(CBW)制剂释放带来的切实威胁,检测空气传播病原体是一个至关重要的军事和安全关注点。最近开发的用于生物收集的空气采样技术利用介电上电润湿(EWOD)来回收物质,产生高度浓缩的液滴样本。定制的基于 EWOD 的数字微流控平台非常适合充分利用从这个回收过程中产生的微升浓缩液滴。在本文中,我们提出了一种用于免疫分析的独立式全自动 DMF 平台。使用该系统,我们展示了对四类 CBW 模拟生物分子和生物制剂的自动检测,这些生物制剂分别代表了可信的威胁制剂。利用抗体结合的微珠的全磁分离过程,可以快速且完全分离特定的目标抗原,仅需少量洗涤步骤,从而实现非常快速的检测。在这里,我们报告了通过在六到十分钟之间完成的测定,清晰地检测到了四类抗原。分别对人血清白蛋白(HSA)、萎缩芽孢杆菌(BG 孢子)、MS2 噬菌体和大肠杆菌进行了检测,估计检测限分别为 30ng/ml、4×10cfu/ml、10pfu/ml 和 2×10cfu/ml。本文描述的完全集成的便携式平台与下一代电润湿耦合空气采样器高度兼容,因此在未来的现场可部署生物检测系统中具有很强的应用潜力,并可能对医疗保健、环境或食品安全等改变生活的领域产生关键影响。