Institute of Military Veterinary, Academy of Military Medical Sciences, Changchun, China.
The Fourth Hospital of Jilin University, China.
Talanta. 2017 Mar 1;164:432-438. doi: 10.1016/j.talanta.2016.10.098. Epub 2016 Oct 31.
In this study, a new lateral flow nucleic acid biosensor (LFNAB) using hybridization chain reaction (HCR) for signal amplification was developed for visual detection of nucleic acids with high sensitivity and low cost. A "sandwich-type" detection strategy was employed in our design. The sandwich system of capture probe (CP)/target DNA/reporter probe (RP)-HCR complexes was fabricated as the sensing platform. As the initiator strand, reporter probe propagated a chain reaction of hybridization events between the two hairpin probes modified with biotin, and determined whether long nicked DNA polymers were formed. The biotin-labeled double-strand DNA polymers then introduced numerous Streptavidin (SA)-labeled gold nanoparticles (AuNPs) on the lateral flow device. The CP/target DNA/RP-HCR complexes were captured on the test zone by the specific reaction between anti-Fam monoclonal antibody (anti-Fam mAb) on the test zone and Fam of the complexes. The accumulation of AuNPs on the test zone of the biosensor enabled the visual detection of specific sequences. The detection limit of specific DNA was as low as 1.76pM, which was about 2 orders lower than that of the LFNAB without HCR amplification. And the detection limit of Salmonella was 3×10cfumL. In conclusion, this visual detection system, HCR-LFNAB, is suitable for non-specialist personnel and point-of-care (POC) diagnosis in low-resource settings.
在这项研究中,开发了一种新的基于杂交链式反应 (HCR) 的侧向流动核酸生物传感器 (LFNAB),用于高灵敏度和低成本的核酸可视化检测。在我们的设计中采用了“三明治型”检测策略。捕获探针 (CP)/靶 DNA/报告探针 (RP)-HCR 复合物的三明治系统被构建为传感平台。作为引发链,报告探针在两个带有生物素修饰的发夹探针之间的杂交事件中引发链反应,并确定是否形成长切口 DNA 聚合物。然后,生物素标记的双链 DNA 聚合物在侧向流动装置上引入了大量链霉亲和素 (SA) 标记的金纳米颗粒 (AuNPs)。CP/靶 DNA/RP-HCR 复合物通过测试区上的抗 Fam 单克隆抗体 (anti-Fam mAb) 与复合物 Fam 之间的特异性反应被捕获在测试区上。生物传感器测试区上 AuNPs 的积累使特定序列能够进行可视化检测。特定 DNA 的检测限低至 1.76pM,比没有 HCR 扩增的 LFNAB 低约 2 个数量级。并且,沙门氏菌的检测限为 3×10cfu/mL。总之,这种可视化检测系统,HCR-LFNAB,适用于资源匮乏环境中的非专业人员和现场即时检测 (POC)。