School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, PR China; College of Chemistry and Bioengineering, Guilin University of Technology, Guilin 541004, PR China.
Biosens Bioelectron. 2014 Mar 15;53:414-9. doi: 10.1016/j.bios.2013.10.023. Epub 2013 Oct 24.
The profiling of microRNAs (miRNAs) is greatly significant for cellular events or disease diagnosis. Electrochemical methods for miRNAs analysis mostly can only measure one kind of miRNA, which is unambiguous to indicate the disease type and state. Here a label-free and PCR-free electrochemical method is presented for multiplexed evaluation of miRNAs in a single-tube experiment. The method is based on the combination of the high base-mismatch selectivity of ligase chain reaction (LCR) and the remarkable voltammetric signature of electrochemical QDs barcodes. Two reporting probes of RP1 and RP2 were labeled with PbS and CdS quantum dots (QDs) to prepare PbS-RP1 and CdS-RP2 conjugates, and two capture probes of CP1 and CP2 were co-immobilized on magnetic beads (MBs) to fabricate MB-CP1CP2 conjugate. The miRNAs samples were simply incubated with MB-CP1CP2, PbS-RP1, and CdS-RP2 conjugates, and then added with T4 DNA ligase. After release of the disjoined QDs barcodes from the MB-conjugates, two target miRNAs of miR-155 and miR-27b were simultaneously detected by square wave voltammetry with linear ranges of 50 fM-30 pM and 50 fM-1050 pM, and limits of detection (LODs) of 12 fM and 31 fM (S/N=3). The method fulfilled the assay in less than 70 min, and showed acceptable testing recoveries for the determination of miRNAs in biological matrix. Currently there are rare reports about electrochemical multiplexed quantification of miRNAs. The method is likely to provide a new platform for identification of multiple miRNAs in a simple way.
微 RNA(miRNA)谱分析对于细胞事件或疾病诊断具有重要意义。电化学方法主要用于 miRNA 分析,只能测量一种 miRNA,这不能明确指示疾病类型和状态。本文提出了一种无标记和无 PCR 的电化学方法,用于在单个试管实验中对 miRNA 进行多重评估。该方法基于连接酶链反应(LCR)的高碱基错配选择性和电化学量子点条码的显著伏安特性。两个报告探针 RP1 和 RP2 分别用 PbS 和 CdS 量子点(QDs)标记,制备 PbS-RP1 和 CdS-RP2 缀合物,两个捕获探针 CP1 和 CP2 共固定在磁珠(MB)上,制备 MB-CP1CP2 缀合物。miRNA 样品与 MB-CP1CP2、PbS-RP1 和 CdS-RP2 缀合物简单孵育,然后加入 T4 DNA 连接酶。从 MB-缀合物上释放出分离的 QD 条码后,通过方波伏安法同时检测两种目标 miRNA(miR-155 和 miR-27b),线性范围为 50 fM-30 pM 和 50 fM-1050 pM,检测限(LOD)为 12 fM 和 31 fM(S/N=3)。该方法在 70 分钟内完成了测定,并且在生物基质中测定 miRNA 时表现出可接受的测试回收率。目前关于电化学多重 miRNA 定量的报道很少。该方法可能为简单地鉴定多种 miRNA 提供一个新的平台。