University of Sousse, Higher Institute of Applied Science and Technology of Sousse- ISSAT, NANOMISENE Lab, LR16CRMN01-CRMN, 4003, Sousse, Tunisia.
INTERFIBIO Consolidated Research Group, Department of Chemical Engineering, Universitat Rovira I Virgili, 43007, Tarragona, Spain.
Anal Chim Acta. 2020 May 22;1112:54-61. doi: 10.1016/j.aca.2020.03.059. Epub 2020 Apr 1.
Due to the extreme infectivity of Yersinia pestis it poses a serious threat as a potential biowarfare agent, which can be rapidly and facilely disseminated. A cost-effective and specific method for its rapid detection at extremely low levels is required, in order to facilitate a timely intervention for containment. Here, we report an ultrasensitive method exploiting a combination of isothermal nucleic acid amplification with a tailed forward primer and biotinylated dNTPs, which is performed in less than 30 min. The polymerase chain reaction (PCR) and enzyme linked oligonucleotide assay (ELONA) were used to optimise assay parameters for implementation on the LFA, and achieved detection limits of 45 pM and 940 fM using SA-HRP and SA-polyHRP, respectively. Replacing PCR with isothermal amplification, namely recombinase polymerase amplification, similar signals were obtained (314 fM), with just 15 min of amplification. The lateral flow detection of the isothermally amplified and labelled amplicon was then explored and detection limits of 7 fM and 0.63 fg achieved for synthetic and genomic DNA, respectively. The incorporation of biotinylated dNTPs and their exploitation for the ultrasensitive molecular detection of a nucleic acid target has been demonstrated and this generic platform can be exploited for a multitude of diverse real life applications.
由于鼠疫耶尔森菌具有极强的传染性,因此它作为一种潜在的生物战剂构成了严重威胁,可以迅速而轻易地传播。为了便于及时干预和遏制,需要有一种经济有效的特定方法来快速检测极低水平的鼠疫耶尔森菌。在这里,我们报告了一种超灵敏的方法,该方法利用等温核酸扩增与长尾正向引物和生物素标记的 dNTP 的结合来实现,整个过程不到 30 分钟。聚合酶链反应(PCR)和酶联寡核苷酸检测(ELONA)用于优化在 LFA 上实施的检测参数,并使用 SA-HRP 和 SA-polyHRP 分别实现了 45 pM 和 940 fM 的检测限。用等温扩增(即重组酶聚合酶扩增)代替 PCR,可获得类似的信号(314 fM),扩增时间仅为 15 分钟。随后,对等温扩增和标记的扩增子的侧向流动检测进行了探索,并分别实现了 7 fM 和 0.63 fg 的合成 DNA 和基因组 DNA 的检测限。已经证明了生物素标记的 dNTP 的掺入及其对核酸靶标进行超灵敏分子检测的应用,并且该通用平台可用于多种不同的实际应用。