School of Medical Sciences, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan, Malaysia.
Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.
Biosens Bioelectron. 2015 Aug 15;70:282-8. doi: 10.1016/j.bios.2015.03.048. Epub 2015 Mar 31.
In this study, we developed a nucleic acid-sensing platform in which a simple, dry-reagent-based nucleic acid amplification assay is combined with a portable multiplex electrochemical genosensor. Preparation of an amplification reaction mix targeting multiple DNA regions of interest is greatly simplified because the lyophilized reagents need only be reconstituted with ultrapure water before the DNA sample is added. The presence of single or multiple target DNAs causes the corresponding single-stranded DNA (ssDNA) amplicons to be generated and tagged with a fluorescein label. The fluorescein-labeled ssDNA amplicons are then analyzed using capture probe-modified screen-printed gold electrode bisensors. Enzymatic amplification of the hybridization event is achieved through the catalytic production of electroactive α-naphthol by anti-fluorescein-conjugated alkaline phosphatase. The applicability of this platform as a diagnostic tool is demonstrated with the detection of toxigenic Vibrio cholerae serogroups O1 and O139, which are associated with cholera epidemics and pandemics. The platform showed excellent diagnostic sensitivity and specificity (100%) when challenged with 168 spiked stool samples. The limit of detection was low (10 colony-forming units/ml) for both toxigenic V. cholerae serogroups. A heat stability assay revealed that the dry-reagent amplification reaction mix was stable at temperatures of 4-56 °C, with an estimated shelf life of seven months. The findings of this study highlight the potential of combining a dry-reagent-based nucleic acid amplification assay with an electrochemical genosensor in a more convenient, sensitive, and sequence-specific detection strategy for multiple target nucleic acids.
在本研究中,我们开发了一种核酸传感平台,该平台将简单的、基于干试剂的核酸扩增检测与便携式多重电化学基因传感器相结合。由于冻干试剂只需用超纯水复溶,然后加入 DNA 样品,因此大大简化了针对多个感兴趣 DNA 区域的扩增反应混合物的制备。单个或多个靶 DNA 的存在会导致相应的单链 DNA(ssDNA)扩增子生成,并带有荧光素标记。然后,使用带有捕获探针的修饰的丝网印刷金电极双传感器分析带有荧光素标记的 ssDNA 扩增子。通过抗荧光素缀合的碱性磷酸酶催化产生电活性α-萘酚来实现杂交事件的酶扩增。通过检测与霍乱流行和大流行相关的产毒霍乱弧菌血清群 O1 和 O139,证明了该平台作为诊断工具的适用性。该平台在检测 168 份加标粪便样本时表现出出色的诊断灵敏度和特异性(100%)。对于两种产毒霍乱弧菌血清群,检测限均较低(10 个菌落形成单位/ml)。热稳定性检测表明,干试剂扩增反应混合物在 4-56°C 的温度下稳定,估计保质期为七个月。本研究的结果突出了将基于干试剂的核酸扩增检测与电化学基因传感器相结合,用于更方便、更灵敏和更具序列特异性的多种靶核酸检测策略的潜力。