College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083, PR China.
Biosens Bioelectron. 2014 Jan 15;51:36-9. doi: 10.1016/j.bios.2013.07.036. Epub 2013 Jul 26.
A facile strategy for the assay of target miRNA using fluorescent silver nanoclusters (AgNCs) has been described. Due to the preferable interaction between cytosine residues and Ag(+), a short cytosine-rich oligonucleotide (ODN) with only six bases 5'-TCCCCC-3' served as an efficient scaffold for the creation of the AgNCs. The AgNCs displayed a bright red emission when excited at 545nm. Such ODN base-stabilized AgNCs have been exploited for miRNA sensing. Overhangs of TCC at the 5' end (5'-TCC) and CCC at the 3' end (CCC-3') (denoted as 5'-TCC/CCC-3') appended to the hairpin ODN probe which also contains recognition sequences for target miRNA were included. Interestingly, the AgNCs/hairpin ODN probe showed similar spectral properties as that templated by 5'-TCCCCC-3'. The formation of the hairpin ODN probe/miRNA duplex separated the 5'-TCC/CCC-3' overhangs, thus disturbing the optical property or structure of the AgNCs. As a result, fluorescence quenching of the AgNCs/hairpin ODN probe was obtained, which allows for facile determination of target miRNA. The proposed method is simple and cost-effective, holding great promise for clinical applications.
一种利用荧光银纳米簇(AgNCs)测定靶 miRNA 的简便策略已经被描述。由于胞嘧啶残基与 Ag(+) 之间的优先相互作用,一个只有六个碱基 5'-TCCCCC-3' 的短胞嘧啶丰富寡核苷酸(ODN)作为一个有效的支架来制备 AgNCs。AgNCs 在 545nm 激发时显示出明亮的红色发射。这种 ODN 碱基稳定的 AgNCs 已被用于 miRNA 传感。发夹型 ODN 探针的 5' 端添加了 TCC 突出(5'-TCC)和 3' 端的 CCC 突出(CCC-3')(表示为 5'-TCC/CCC-3'),其包含靶 miRNA 的识别序列。有趣的是,AgNCs/发夹型 ODN 探针显示出与由 5'-TCCCCC-3' 模板化的类似光谱特性。发夹型 ODN 探针/miRNA 双链体的形成分离了 5'-TCC/CCC-3' 突出,从而干扰了 AgNCs 的光学性质或结构。结果,AgNCs/发夹型 ODN 探针的荧光猝灭得以实现,从而可以方便地测定靶 miRNA。该方法简单且具有成本效益,在临床应用中具有很大的应用前景。