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Single Functionalized pRNA/Gold Nanoparticle for Ultrasensitive MicroRNA Detection Using Electrochemical Surface‐Enhanced Raman Spectroscopy

机译:单功能化pRNA /金纳米颗粒用于使用电化学表面增强拉曼光谱技术进行超灵敏MicroRNA检测

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摘要

Controlling the selective one‐to‐one conjugation of RNA with nanoparticles is vital for future applications of RNA nanotechnology. Here, the monofunctionalization of a gold nanoparticle (AuNP) with a single copy of RNA is developed for ultrasensitive microRNA‐155 quantification using electrochemical surface‐enhanced Raman spectroscopy (EC‐SERS). A single AuNP is conjugated with one copy of the packaging RNA (pRNA) three‐way junction (RNA 3WJ). pRNA 3WJ containing one strand of the 3WJ is connected to a Sephadex G100 aptamer and a biotin group at each arm (SEPapt/3WJ/Bio) which is then immobilized to the Sephadex G100 resin. The resulting complex is connected to streptavidin‐coated AuNP (STV/AuNP). Next, the STV/AuNP–Bio/3WJa is purified and reassembled with another 3WJ to form a single‐labeled 3WJ/AuNP. Later, the monoconjugate is immobilized onto the AuNP‐electrodeposited indium tin oxide coated substrate for detecting microRNA‐155 based on EC‐SERS. Application of an optimum potential of +0.2 V results in extraordinary amplification (≈7 times) of methylene blue (reporter) SERS signal compared to the normal SERS signal. As a result, a highly sensitive detection of 60 × 10 microRNA‐155 in 1 h in serum based on monoconjugated AuNP/RNA is achieved. Thus, the monofunctionalization of RNA onto nanoparticle can provide a new methodology for biosensor construction and diverse RNA nanotechnology development.
机译:控制RNA与纳米粒子的一对一选择性结合对于RNA纳米技术的未来应用至关重要。在这里,开发了具有单拷贝RNA的金纳米粒子(AuNP)的单功能化,用于使用电化学表面增强拉曼光谱(EC-SERS)进行超灵敏的microRNA-155定量。单个AuNP与包装RNA(pRNA)三向连接(RNA 3WJ)的一个副本缀合。将包含3WJ一条链的pRNA 3WJ连接到Sephadex G100适体和每个臂上的生物素基团(SEPapt / 3WJ / Bio),然后将其固定到Sephadex G100树脂上。生成的复合物与链霉亲和素包被的AuNP(STV / AuNP)连接。接下来,将STV / AuNP–Bio / 3WJa纯化并与另一个3WJ重新组装,以形成单标签3WJ / AuNP。后来,将单缀合物固定在AuNP电沉积的铟锡氧化物涂层基质上,以基于EC-SERS检测microRNA-155。与常规SERS信号相比,施加+0.2 V的最佳电势会导致亚甲基蓝(报道者)SERS信号异常放大(≈7倍)。结果,高灵敏度检测为60×10 在基于单结合AuNP / RNA的血清中在1小时内获得microRNA‐155。因此,RNA在纳米颗粒上的单功能化可以为生物传感器的构建和多样化的RNA纳米技术的发展提供一种新的方法。

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