首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Rolling circle amplification-mediated in situ synthesis of palladium nanoparticles for the ultrasensitive electrochemical detection of microRNA
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Rolling circle amplification-mediated in situ synthesis of palladium nanoparticles for the ultrasensitive electrochemical detection of microRNA

机译:滚动圆介导介导原位合成钯纳米粒子,用于微瘤的超敏电化学检测

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摘要

Herein, an ultrasensitive and label-free electrochemical biosensor was developed for microRNA (miRNA) based on rolling circle amplification (RCA)-mediated palladium nanoparticles (PdNPs). The sensor was fabricated by immobilizing dual-functionalized hairpin probes onto an electrode. The specific recognition of target miRNA-21 by the hairpin probes could trigger the RCA reaction, which produced numerous guanine (G)-rich long single-stranded DNAs (ssDNAs). Based on the interaction of the PdII species with the nitrogen atoms of the G bases, these G-rich long ssDNAs served as specific templates in the in situ synthesis of massive PdNPs as electrochemical indicators. The formation of PdNPs was demonstrated to be exactly along the RCA products by high-resolution transmission electron microscopy. Using this cascade signal amplification strategy, the developed biosensor achieved a linear range of 50 aM-100 fM with an ultralow detection limit of 8.6 aM miRNA-21. Furthermore, the developed biosensor exhibited good selectivity, reproducibility, stability and satisfactory feasibility for miRNA-21 detection in human serum samples; this ensured significant potential of this biosensor in disease diagnosis and prognosis applications.
机译:本文,基于滚动圆扩增(RCA)介导的钯纳米颗粒(PDNP),为微小RORNA(miRNA)开发了超细胞传感和无标记电化学生物传感器。通过将双官能化发夹探针固定到电极上,通过将传感器固定到电极上来制造。发夹探针的靶miRNA-21的具体识别可以引发RCA反应,其产生许多鸟嘌呤(G) - 中间长链DNA(SSDNA)。基于PDII物种与G碱的氮原子的相互作用,这些G-富含L长的SSDNA在原位合成的特定模板中作为电化学指示剂。通过高分辨率透射电子显微镜证明PDNP的形成沿RCA产品完全沿RCA产品。使用该级联信号放大策略,开发的生物传感器实现了50 AM-100 FM的线性范围,超级检测限为8.6AM miRNA-21。此外,发育的生物传感器表现出良好的选择性,再现性,稳定性和令人满意的人血清样品中的miRNA-21检测的可行性;这确保了这种生物传感器在疾病诊断和预后应用中的显着潜力。

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