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新型磁共振弛豫纳米传感器:流感诊断的“自旋”突破。

Novel magnetic relaxation nanosensors: an unparalleled "spin" on influenza diagnosis.

机构信息

Department of Chemistry and KPRC, Pittsburg State University, 1701 S. Broadway Street, Pittsburg, KS 66762, USA.

出版信息

Nanoscale. 2016 Dec 1;8(47):19605-19613. doi: 10.1039/c6nr05889b.

Abstract

Rapid detection and diagnosis of pathogenic strains of influenza is necessary for expedited treatment and quicker resolutions to the ever-rising flu pandemics. Considering this, we propose the development of novel magnetic relaxation nanosensors (MRnS) for the rapid detection of influenza through targeted binding with hemagglutinin. 2,6- and 2,3-sialic acid ligands and entry blocker peptides are conjugated to iron oxide nanoparticles to create functional MRnS. Positive detection of various hemagglutinin variants (H1 and H5) is possible with protein concentrations as little as 1.0 nM. Most importantly, detection using functional MRnS is achieved within minutes and differentiates between influenza subtypes. This specificity allows mixtures of MRnS to screen for multiple pathogens at once, discarding the need to conduct multiple individual tests. Current methods used to diagnose influenza, such as RT-PCR and viral culturing, while largely effective, are complex, time-consuming and costly. As well, they are not as sensitive or specific, and have been known to produce false-positive results. In contrast to these methods, targeted MRnS are robust, point-of-care diagnostic tools featuring simple, rapid and low-cost procedures. These qualities, as well as high sensitivity and specificity, and low turnaround times, make a strong case for the diagnostic application of MRnS in clinical settings.

摘要

快速检测和诊断流感的致病菌株对于加快治疗和解决不断上升的流感大流行至关重要。有鉴于此,我们提出开发新型磁性弛豫纳米传感器 (MRnS),通过与血凝素的靶向结合来快速检测流感。将 2,6- 和 2,3-唾液酸配体和进入阻断肽缀合到氧化铁纳米颗粒上,以创建功能性 MRnS。只需 1.0 nM 的蛋白质浓度即可对各种血凝素变体 (H1 和 H5) 进行阳性检测。最重要的是,使用功能性 MRnS 可以在几分钟内进行检测,并区分流感亚型。这种特异性允许混合使用 MRnS 同时筛选多种病原体,无需进行多次单独测试。目前用于诊断流感的方法,如 RT-PCR 和病毒培养,虽然在很大程度上有效,但复杂、耗时且昂贵。此外,它们的灵敏度和特异性不如 MRnS,并且已知会产生假阳性结果。与这些方法相比,靶向 MRnS 是强大的、即时诊断的工具,具有简单、快速和低成本的程序。这些特性以及高灵敏度和特异性以及低周转时间,使得 MRnS 在临床环境中的诊断应用具有很强的说服力。

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