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三嵌段探针-聚 A-探针电化学界面工程用于 RNAi 植物的灵敏分析。

Triblock probe-polyA-probe electrochemical interfacial engineering for the sensitive analysis of RNAi plants.

机构信息

Key Laboratory of Bioanalysis and Metrology for State Market Regulation, Shanghai Institute of Measurement and Testing Technology, 1500 Zhang Heng Road, Shanghai 201203, People's Republic of China.

Institute of Quality Standard and Testing Technology for Agro-products, Chinese Academy of Agricultural Sciences, Beijing, 100081, PR China.

出版信息

Analyst. 2022 May 30;147(11):2452-2459. doi: 10.1039/d2an00366j.

Abstract

RNA interference (RNAi) is currently under fast development, which brings improved crop quality and new activity against pests in agriculture, by producing RNAs to specifically inhibit gene expression. This technology, in turn, creates a pressing need for sensitive and specific analytical methods of exogenous RNA molecules in genetically modified (GM) crops for safety assessment and regulation of RNAi plants and their products. In this work, we developed a novel RNA electrochemical biosensor for the analysis of GM maize samples based on a polyA-DNA capturing probe containing three DNA segments: the central polyA segment combined onto a gold electrode surface with adjustable configuration and density, and two flanking DNA probes simultaneously captured the RNA targets through hybridization. Both the assembling and hybridization capability of our probe were demonstrated, and we systematically optimized the analytical conditions. Finally, the ultrasensitive detection of 10 fM RNA was realized without any amplification processes, and the specificity was verified by analyzing non-target maize samples. Our electrochemical biosensor provided a reliable and convenient measurement strategy for RNAi safety and quality assessment, and more importantly, our PAP (probe-polyA-probe) capturing probe exhibited an innovative design for the detection of large RNA molecules with complex secondary structures.

摘要

RNA 干扰 (RNAi) 目前正在快速发展,通过产生特定抑制基因表达的 RNA,可提高作物质量并为农业害虫防治带来新的活力。这项技术反过来又对用于安全性评估和监管 RNAi 植物及其产品的转基因 (GM) 作物中外源 RNA 分子的灵敏和特异分析方法提出了迫切需求。在这项工作中,我们开发了一种新型的基于聚 A-DNA 捕获探针的 RNA 电化学生物传感器,用于 GM 玉米样品的分析。该捕获探针包含三个 DNA 片段:中心聚 A 片段与金电极表面结合,具有可调节的构型和密度,两个侧翼 DNA 探针通过杂交同时捕获 RNA 靶标。我们证明了探针的组装和杂交能力,并系统地优化了分析条件。最后,在没有任何扩增过程的情况下实现了对 10 fM RNA 的超灵敏检测,并通过分析非目标玉米样品验证了特异性。我们的电化学生物传感器为 RNAi 的安全性和质量评估提供了可靠和方便的测量策略,更重要的是,我们的 PAP(探针-聚 A-探针)捕获探针为检测具有复杂二级结构的大型 RNA 分子提供了创新设计。

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