Lu Ruojun, Li Shengqiang, Fan Meihong, Wei Jingjing, Liu Xu
First Teaching Hospital of Tianjin University of Traditional Chinese Medicine Tianjin 300020 China
RSC Adv. 2018 Apr 18;8(26):14663-14668. doi: 10.1039/c8ra00416a. eCollection 2018 Apr 17.
Herein, a single-step, rapid and homogenous fluorescence approach for highly sensitive and specific detection of CEA was successfully constructed for the first time using an aptamer binding-induced exonuclease III (Exo III)-mediated dual-amplification strategy. When present, CEA can specifically combine with the aptamer region in H1, resulting in a conformational change of H1 and the exposure of the occluded DNA fragment in the stem regions. Successively, the exposed DNA fragment partially hybridizes with H2 to initiate Exo III-assisted cycling cleavage to release another DNA fragment, which can in turn activate the cycling cleavage of the DNA fluorescence substrate (FS). Therefore, many fluorophore fragments are liberated to produce a significantly amplified fluorescence signal toward CEA detection. By virtue of the Exo III-assisted dual-amplification strategy, this method allows the detection of CEA at the fg mL level with excellent selectivity. Compared with other reported strategies for CEA detection, the Exo III-assisted dual-amplification homogeneous platform only requires a one-step reaction, offering a very simple and low-cost detection. The practical ability of the developed strategy is demonstrated by the detection of CEA in human serum with satisfactory results. Thus, this method shows great potential in assays of many other biological analytes in clinical diagnosis.
在此,首次成功构建了一种基于适体结合诱导的核酸外切酶III(Exo III)介导的双扩增策略的单步、快速且均相的荧光方法,用于高灵敏度和特异性检测癌胚抗原(CEA)。当存在CEA时,它能与H1中的适体区域特异性结合,导致H1构象改变,茎区中被封闭的DNA片段暴露。随后,暴露的DNA片段与H2部分杂交,启动Exo III辅助的循环切割,释放另一个DNA片段,该片段又能激活DNA荧光底物(FS)的循环切割。因此,许多荧光团片段被释放出来,产生显著放大的荧光信号用于CEA检测。借助Exo III辅助的双扩增策略,该方法能够在飞克/毫升水平检测CEA,具有出色的选择性。与其他报道的CEA检测策略相比,Exo III辅助的双扩增均相平台仅需一步反应,提供了一种非常简单且低成本的检测方法。所开发策略的实际应用能力通过检测人血清中的CEA得到了验证,结果令人满意。因此,该方法在临床诊断中对许多其他生物分析物的检测中显示出巨大潜力。