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A simple and universal enzyme-free approach for the detection of multiple microRNAs using a single nanostructured enhancer of surface plasmon resonance imaging

机译:使用表面等离子体共振成像的单个纳米结构增强器检测多微小RORNA的一种简单且通用的酶方法

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Here we describe a simple approach for the simultaneous detection of multiple microRNAs (miRNAs) using a single nanostructured reagent as surface plasmon resonance imaging (SPRi) enhancer and without using enzymatic reactions, sequence specific enhancers or multiple enhancing steps as normally reported in similar studies. The strategy involves the preparation and optimisation of neutravidin-coated gold nanospheres (nGNSs) functionalised with a previously biotinylated antibody (Ab) against DNA/RNA hybrids. The Ab guarantees the recognition of any miRNA sequence adsorbed on a surface properly functionalised with different DNA probes; at the same time, gold nanoparticles permit to detect this interaction, thus producing enough SPRi signal even at a low ligand concentration. After a careful optimisation of the nanoenhancer and after its characterisation, the final assay allowed the simultaneous detection of four miRNAs with a limit of detection (LOD) of up to 0.5pM (equal to 275attomoles in 500L) by performing a single enhancing injection. The proposed strategy shows good signal specificity and permits to discriminate wild-type, single- and triple-mutated sequences much better than non-enhanced SPRi. Finally, the method works properlyin complex samples (total RNA extracted from blood) as demonstrated by the detection of four miRNAs potentially related to multiple sclerosis used as case study. This proof-of-concept study confirms that the approach provides the possibility to detect a theoretically unlimited number of miRNAs using a simple protocol and an easily prepared enhancing reagent, and may further facilitate the development of affordable multiplexing miRNA screening for clinical purposes.
机译:在这里,我们描述了使用单个纳米结构试剂作为表面等离子体共振成像(SPRI)增强剂和不使用酶促反应,序列特异性增强剂或通常报告的多种增强步骤的一种简单的方法。该策略涉及用先前生物素化抗体(AB)对抗DNA / RNA杂种官能团的制备和优化官能团。 AB保证识别吸附在具有不同DNA探针的表面上的表面上的任何miRNA序列;同时,金纳米粒子允许检测该相互作用,从而产生足够的SPRI信号,即使在低配体浓度下也可以产生足够的SPRI信号。在粉刺优化纳米宏观和表征之后,通过进行单一增强注射,最终测定允许同时检测多达0.5分的检测(LOD)的限制(LOD),通过进行单一增强注射。所提出的策略显示出良好的信号特异性,并且允许区分野生型,单突变和三重突变序列的优于非增强SPRI。最后,通过检测到潜在与用作案例研究的多发性硬化症可能相关的四种miRNA来证明,该方法适用于综合性复杂样本(从血液中提取的总RNA)。该概念证明研究证实,该方法提供了使用简单方案和容易制备的增强试剂检测理论上无限数量的miRNA的可能性,并且可以进一步促进用于临床目的的负担得起的复用miRNA筛选的发展。

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