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一种将DNA酶与金纳米颗粒方法相结合的新型登革热病毒检测方法。

A novel dengue virus detection method that couples DNAzyme and gold nanoparticle approaches.

作者信息

Carter James R, Balaraman Velmurugan, Kucharski Cheryl A, Fraser Tresa S, Fraser Malcolm J

机构信息

Department of Biological Sciences, Eck Institute of Global Health, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

Virol J. 2013 Jun 28;10:201. doi: 10.1186/1743-422X-10-201.

Abstract

BACKGROUND

Recent epidemics of dengue viruses (DENV) coupled with new outbreaks on the horizon have renewed the demand for novel detection methods that have the ability to identify this viral pathogen prior to the manifestation of symptoms. The ability to detect DENV in a timely manner is essential for rapid recovery from disease symptoms. A modified lab-derived 10-23 DNAzyme tethered to gold nanoparticles provides a powerful tool for the detection of viruses, such as DENV.

RESULTS

We examined the effectiveness of coupling DNAzyme (DDZ) activation to the salt-induced aggregation of gold nanoparticles (AuNP) to detect dengue virus (DENV) progeny in mosquito cells. A DNAzyme was designed to recognize the 5' cyclization sequence (5' CS) that is conserved among all DENV, and conjugated to AuNPs. DDZ-AuNP has demonstrated the ability to detect the genomic RNA of our model dengue strain, DENV-2 NGC, isolated from infected Aedes albopictus C6/36 cells. These targeting events lead to the rapid aggregation of AuNPs, resulting in a red to clear color transition of the reaction mixes, and thus positive detection of the DENV RNA genome. The inclusion of SDS in the reaction mixture permitted the detection of DENV directly from cell culture supernatants without additional sample processing. Specificity assays demonstrated detection is DENV-specific, while sensitivity assays confirm detection at levels of 1 × 10(1) TCID50 units. These results demonstrate DDZ-AuNP effectively detects DENV genomes in a sequence specific manner and at concentrations that are practical for field use.

CONCLUSIONS

We have developed an effective detection assay using DNAzyme catalysis coupled with AuNP aggregation for the detection of DENV genomes in a sequence specific manner. Full development of our novel DDZ-AuNP detection method will provide a practical, rapid, and low cost alternative for the detection of DENV in mosquito cells and tissues, and possibly infected patient serum, in a matter of minutes with little to no specialized training required.

摘要

背景

近期登革病毒(DENV)的流行以及新疫情的出现,使得对能够在症状出现之前识别这种病毒病原体的新型检测方法的需求再次增加。及时检测登革病毒的能力对于从疾病症状中快速康复至关重要。一种与金纳米颗粒相连的改良实验室衍生的10-23脱氧核酶为检测登革病毒等病毒提供了一种强大的工具。

结果

我们研究了将脱氧核酶(DDZ)激活与盐诱导的金纳米颗粒(AuNP)聚集相结合以检测蚊细胞中登革病毒(DENV)子代的有效性。设计了一种脱氧核酶来识别所有登革病毒中保守的5'环化序列(5'CS),并与金纳米颗粒偶联。DDZ-AuNP已证明能够检测从感染的白纹伊蚊C6/36细胞中分离出的我们的模型登革病毒株DENV-2 NGC的基因组RNA。这些靶向事件导致金纳米颗粒快速聚集,使反应混合物的颜色从红色变为澄清,从而实现对登革病毒RNA基因组的阳性检测。反应混合物中加入十二烷基硫酸钠(SDS)可直接从细胞培养上清液中检测登革病毒,无需额外的样品处理。特异性分析表明检测具有登革病毒特异性,而敏感性分析证实可在1×10(1)半数组织培养感染剂量(TCID50)单位水平进行检测。这些结果表明DDZ-AuNP能够以序列特异性方式并在适合现场使用的浓度下有效检测登革病毒基因组。

结论

我们开发了一种有效的检测方法,利用脱氧核酶催化与金纳米颗粒聚集相结合,以序列特异性方式检测登革病毒基因组。我们新型的DDZ-AuNP检测方法的全面开发将为在几分钟内检测蚊细胞和组织以及可能感染的患者血清中的登革病毒提供一种实用、快速且低成本的替代方法,几乎不需要或无需专门培训。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af03/3765938/353a22aeeafc/1743-422X-10-201-1.jpg

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