College of Chemistry and Chemical Engineering, Anyang Normal University, Anyang, Henan 455000, People's Republic of China.
Biosens Bioelectron. 2013 Sep 15;47:461-6. doi: 10.1016/j.bios.2013.03.074. Epub 2013 Apr 6.
MicroRNAs (miRNAs), regulating gene expression by translational repression or degradation of messenger RNAs, are believed to be important for cancer diagnosis and prognosis serving as reliable molecular biomarkers. Simple, sensitive, and cost-effective assays for miRNAs are therefore in urgent demand. The main difference in the structure of RNA versus DNA is the presence of a hydroxyl group at the 2' position of the ribose sugar in RNA, which makes the RNA molecule contain cis-diol at the end of the chain. Hydrophilic boronic acids are well known to form covalent bonds with cis-diols. In this work, we reported a label-free and sensitive method for the detection of miRNAs based on the formation of boronate ester covalent bonds and the dual-amplification of gold nanoparticles (AuNPs). Specifically, miRNAs were captured by the pre-immobilized DNA probes at the gold electrode, and derivatized with 4-mercaptophenylboronic acid (MBA)-capped AuNPs (MBA-AuNPs) through the formation of tight covalent bonds between the boronic acids of MBA-AuNPs and diols of miRNAs. Electrochemically active dopamine (DA)-capped AuNPs (DA-AuNPs) were then attached by the anchored MBA-AuNPs via the interaction of boronic acids and DA tags, which facilities the amplified voltammetric detection of miRNAs. Analytical merits (e.g., sensitivity, reproducibility, storage stability, dynamic range, and selectivity) were addressed. We believe that the results will be valuable for the development of biosensor for the detection of miRNAs in a biological matrix.
微小 RNA(miRNA)通过翻译抑制或信使 RNA 的降解来调节基因表达,被认为是癌症诊断和预后的重要分子标志物,可作为可靠的分子生物标志物。因此,迫切需要简单、灵敏、经济有效的 miRNA 检测方法。RNA 与 DNA 结构的主要区别在于 RNA 核糖的 2' 位存在一个羟基,这使得 RNA 分子在链的末端含有顺式二醇。众所周知,亲水性硼酸与顺式二醇形成共价键。在这项工作中,我们报道了一种基于硼酸酯共价键形成和金纳米粒子(AuNPs)双重扩增的无标记和灵敏的 miRNA 检测方法。具体来说,miRNA 被预固定在金电极上的 DNA 探针捕获,并通过 MBA-AuNPs 中的硼酸与 miRNA 中的二醇之间形成紧密的共价键,用 4-巯基苯硼酸(MBA)封端的 AuNPs(MBA-AuNPs)衍生化。然后,通过硼酸和 DA 标签之间的相互作用,将电化学活性的多巴胺(DA)封端的 AuNPs(DA-AuNPs)附着在固定的 MBA-AuNPs 上,这有利于通过放大伏安法对 miRNA 进行检测。探讨了分析优点(例如,灵敏度、重现性、储存稳定性、动态范围和选择性)。我们相信,这些结果将对生物基质中 miRNA 检测生物传感器的开发具有重要价值。