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Dual modality sensor using liposome-based signal amplification technique for ultrasensitive norovirus detection

机译:使用基于脂质体的信号放大技术进行双模态传感器,用于超声难题诺病毒检测

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摘要

Sensitive and accurate detection methods for infectious viruses are the pressing need for effective disease diagnosis and treatment. Herein, based on V2O5 nanoparticles-encapsulated liposomes (VONP-LPs) we demonstrate a dual-modality sensing platform for ultrasensitive detection of the virus. The sensing performance relies on intrinsic peroxidase and electrochemical redox property of V2O5 nanoparticles (V2O5 NPs). The target-specific antibody-conjugated VONP-LPs and magnetic nanoparticles (MNPs) enrich the virus by magnetic separation and the separated VONP-LPs bound viruses are hydrolyzed to release the encapsulated V2O5 NPs. These released nanoparticles from captured liposomes act as peroxidase mimics and electrochemical redox indicator resulting in noticeable colorimetric and robust electrochemical dual-signal. Utilizing the superiority of dual-modality sensor with two quantitative analysis forms, norovirus like particles (NoV-LPs) can be detected by electrochemical signals with a wide linear range and low detection limit. To verify the applicability in real samples, norovirus (NoV) collected from actual clinical samples are effectively-identified with excellent accuracy. This proposed detection method can be a promising next-generation bioassay platform for early-stage diagnosis of virus disease and surveillance for public health.
机译:感染病毒的敏感和准确的检测方法是有效疾病诊断和治疗的压迫需求。这里,基于V2O5纳米颗粒包封的脂质体(VONP-LPS),我们证明了用于病毒的超细敏感检测的双级传感平台。感测性能依赖于V2O5纳米颗粒(V2O5 NPS)的内在过氧化物酶和电化学氧化还原性能。靶特异性抗体 - 缀合的VONP-LP和磁性纳米颗粒(MNP)通过磁性分离富集病毒,分离的VONP-LPS结合病毒水解以释放包封的V2O5 NPS。这些来自捕获的脂质体的纳米颗粒作为过氧化物酶模拟和电化学氧化还原指示剂,导致明显的比色和鲁棒电化学双信号。利用具有两种定量分析形式的双模传感器的优越性,可以通过具有宽线性范围和低检测极限的电化学信号来检测诺维病毒等颗粒(11P-LPS)。为了验证真实样品中的适用性,从实际临床样品中收集的诺罗病毒(11月)以优异的精度有效地识别。该提出的检测方法可以是对病毒疾病的早期诊断和公共卫生监测的承诺的下一代生物测定平台。

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