等离子体纳米粒子混合过氧化物酶样靶向dna纳米机器(PxDm)诱导核酸的化学发光检测

D. A. Gorbenko, P. Filatov, D. Dadadzhanov, K. Kirichek, M. Berezovskaya, T. Vartanyan
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引用次数: 0

摘要

分子诊断和医学领域最关键的问题之一是开发紧凑和敏感的检测设备,用于精确检测核酸。虽然有几种检测独特核酸序列的有效方法,但由于设备和试剂的高成本以及对训练有素的人员的需求,有必要设计新的和更负担得起的诊断分析方法,这些方法在选择性和灵敏度上与可在发展中国家和/或在专门诊断实验室之外使用的现有方法相当。鸟嘌呤四联体(G-4)/血红蛋白复合物具有过氧化物酶活性,是检测靶核酸的一个有前途的方向。靶核酸通过类似过氧化物酶的dna纳米机(PxDm)进行分析,PxDm具有1-3个长的分析物结合臂,可以紧密结合和解开单链分析物。在这项研究中,我们提出了一种核酸序列特异性检测技术。该技术是基于利用封闭式检测装置测量鲁米诺氧化引起的化学发光(CL)发射。此外,还研究了等离子体银纳米粒子(agnps)的光学性质及其在增强化学发光团光强度方面的潜在应用。特别注意的是,根据合成方法和合成时间的不同,合成具有不同等离子体共振带光谱位置的银纳米粒子的可能性。在激光烧蚀得到的离心后胶体银纳米粒子存在下,鲁米诺的CL强度提高了3倍。在目标分析物存在的情况下,agnps -鲁米诺- dna -纳米机系统的结合使检测限显著提高,达到了临床相关的定量指征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemiluminescent detection of nucleic acids induced by peroxidase-like targeted DNA-nanomachines (PxDm) mixed with plasmonic nanoparticles
One of the most critical issues in the field of molecular diagnostics and medicine is the development of compact and sensitive assay devices for the precise detection of nucleic acids. Although there are several effective methods for detecting unique nucleic acid sequences, the high cost of equipment and reagents, as well as the need for highly trained personnel, necessitate the design of new and more affordable diagnostic assays that are comparable in selectivity and sensitivity to existing methods that can be used in developing countries and/or outside of specialized diagnostic laboratories. Sensing methods based on guanine quadruplexes (G-4)/hemin complexes, that have peroxidase activity are one of the promising directions for the detection of target nucleic acids. Target nucleic acid was analyzed by peroxidase-like DNA-nanomachine (PxDm) equipped with 1-3 long analyte binding arms to tightly bind and unwind single-stranded analytes. In this study, we present a technique for sequence-specific detection of nucleic acid. The technique is based on the measuring of a chemiluminescent (CL) emission induced by luminol oxidation utilizing a closed-type detection device. Moreover, the optical properties and potential use of plasmonic silver nanoparticles (Ag NPs) to enhance the CL intensity of chemiluminophore were investigated. Particular attention was paid to the possibility of synthesizing the silver nanoparticles with different spectral positions of plasmon resonance band, depending on the method and duration of synthesis. The CL intensity of luminol in the presence of the post-centrifuged colloidal Ag NPs obtained by laser ablation has been increased 3 times. The combination of AgNPs-luminol-DNA-nanomachine systems in the presence of a target analyte led to the significant increase of limit of detection and reached clinically relevant quantitative indications.
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