School of Biomedical Sciences, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China.
Centre for Biomedical Research, The Burnet Institute of Medical Research and Public Health, Melbourne, Victoria, Australia.
Biosens Bioelectron. 2018 Feb 15;100:591-596. doi: 10.1016/j.bios.2017.10.001. Epub 2017 Oct 4.
There is a critical need for better biosensors for the detection and diagnosis of malaria. We previously developed a DNA aptamer that recognises the Plasmodium falciparum lactate dehydrogenase (PfLDH) enzyme with high sensitivity and specificity. The aptamer was integrated into an Aptamer-Tethered Enzyme Capture (APTEC) assay as a laboratory-based diagnostic approach. However, a portable equipment-free point-of-care aptamer-mediated biosensor could have a significant impact on malaria diagnosis in endemic regions. Here, we present a new concept for a malaria biosensor whereby aptamers are coated onto magnetic microbeads for magnet-guided capture, wash and detection of the biomarker. A biosensor incorporating three separate microfluidic chambers was designed to enable such magnet-guided equipment-free colorimetric detection of PfLDH. A series of microfluidic biosensor prototypes were optimised to lower rates of inter-chamber diffusion, increase sensitivity, and provide a method for point-of-care sample testing. The biosensor showed high sensitivity and specificity when detecting PfLDH using both in vitro cultured parasite samples and using clinical samples from malaria patients. The high performance of the biosensor provides a proof-of-principle for a portable biosensor that could be adaptable for a variety of aptamer-mediated diagnostic scenarios.
对于疟疾的检测和诊断,我们迫切需要更好的生物传感器。我们之前开发了一种 DNA 适体,它可以高度敏感和特异性地识别恶性疟原虫乳酸脱氢酶(PfLDH)酶。该适体被整合到适体连接酶捕获(APTEC)测定法中,作为一种实验室诊断方法。然而,一种无便携式设备的即时护理适体介导的生物传感器可以对流行地区的疟疾诊断产生重大影响。在这里,我们提出了一种新的疟疾生物传感器概念,其中适体被涂覆在磁性微珠上,用于生物标志物的磁引导捕获、洗涤和检测。设计了一种包含三个独立微流控室的生物传感器,以实现这种无磁引导设备的比色 PfLDH 检测。优化了一系列微流控生物传感器原型,以降低室间扩散率、提高灵敏度,并提供一种即时护理样本测试方法。该生物传感器在使用体外培养的寄生虫样本和使用来自疟疾患者的临床样本检测 PfLDH 时,表现出高灵敏度和特异性。生物传感器的高性能为一种便携式生物传感器提供了原理验证,该传感器可以适应各种适体介导的诊断情况。