Department of Chemistry, Hong Kong Baptist University, Hong Kong, China.
Department of Chemistry, Hong Kong Baptist University, Hong Kong, China.
Talanta. 2020 Jan 1;206:120217. doi: 10.1016/j.talanta.2019.120217. Epub 2019 Aug 1.
MicroRNAs (miRNA) involve in regulating different physiological processes whose dysregulation is associated with a wide range of diseases including cancers, diabetes and cardiovascular problems. Herein, we report a direct, sensitive and highly selective detection assay for circulating microRNA (miRNA). This detection strategy employs magnetic nanoparticles as the reaction platform which can not only allow online pre-concentration and selective separation but also integrates ligation reaction with amplification to enhance the sensitivity of the detection assay. With the presence of the target miRNA, the locked nucleic acid (LNA)-modified molecular beacon (MB) opens up, exposing the binding sites at two ends. The 3'- and 5'-end of the MB responsible for the attachment onto the magnetic nanoparticles, and reporting probe for the attachment of the pair of amplification probes respectively. The ligase ligate RNA to DNA enhance the amplification efficiency. Upon labelled with intercalating fluorophores (YOYO-1) on the hybrids, the quantification of the target miRNA was determined by measuring the fluorescence intensity. A detection limit of 314 fM was achieved with trace amount of sample consumption (~20 μL). As a proof of concept, miRNA-149 was chosen as the target miRNA. This assay is capable of discriminating single-base and reliably quantifying circulating miRNA-149 in both healthy and cancer patient's serums. The result obtained was comparable with that of quantitative reverse transcription polymerase chain reaction (qRT-PCR), suggesting that this direct and sensitive assay can be served as a promising, non-invasive tool for early diagnosis of breast cancer and colorectal cancer.
微小 RNA(miRNA)参与调节多种生理过程,其失调与包括癌症、糖尿病和心血管问题在内的多种疾病有关。在此,我们报告了一种用于检测循环 miRNA(miRNA)的直接、灵敏和高选择性的检测方法。这种检测策略采用磁性纳米粒子作为反应平台,不仅可以实现在线预浓缩和选择性分离,还可以将连接反应与扩增集成在一起,从而提高检测方法的灵敏度。在存在靶 miRNA 的情况下,锁定核酸(LNA)修饰的分子信标(MB)打开,暴露出两端的结合位点。MB 的 3' 和 5' 端负责连接到磁性纳米粒子上,报告探针负责连接对扩增探针。连接酶将 RNA 连接到 DNA 上,增强了扩增效率。杂交体上标记有嵌入荧光染料(YOYO-1)后,通过测量荧光强度来定量靶 miRNA。该方法的检测限为 314 fM,样品消耗量极少(约 20 μL)。作为概念验证,选择 miRNA-149 作为靶 miRNA。该检测方法能够区分单碱基,并可靠地定量健康人和癌症患者血清中的循环 miRNA-149。与定量逆转录聚合酶链反应(qRT-PCR)的结果相比,该结果表明,这种直接灵敏的检测方法可以作为乳腺癌和结直肠癌早期诊断的一种有前途的非侵入性工具。