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Towards a Dual Lateral Flow Nanobiosensor for Simultaneous Detection of Virus Genotype-Specific PCR Products

机译:朝向双侧流动纳米极细管传感器,用于同时检测病毒基因型特异性PCR产物

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摘要

Nervous necrosis virus (nodavirus) has been responsible for mass mortalities in aquaculture industry worldwide, with great economic and environmental impact. A rapid low-cost test to identify nodavirus genotype could have important benefits for vaccine and diagnostic applications in small- and medium-scale laboratories in both academia and fish farming industry. A dual lateral flow biosensor for simultaneous detection of the most prevalent nodavirus genotypes (RGNNV and SJNNV) was developed and optimized. The dual biosensor consisted of two antibody-based test zones, indicative of each genotype, and a control zone. The positive signals were visualized by gold nanoparticles functionalized with anti-biotin antibody, and the detection was completed within 20 min. Optimization studies included antibody type and amount determination for test zone construction, gold nanoparticle conjugate type selection for high signal generation, and detection assay parameter determination. Following optimization, the biosensor was evaluated with healthy and RGNNV-nodavirus-infected fish samples. The proposed assay’s cost was estimated to be less than 3 €, including the required reagents and biosensor. This work presents important steps towards making a dual lateral flow biosensor for nodavirus genotyping; further evaluation with clinical samples is needed before the test is appropriate for diagnostic kit development.
机译:神经坏死病毒(NodaVirus)一直负责全球水产养殖业的大规模死亡,具有巨大的经济和环境影响。快速的低成本测试以鉴定卵泡病毒基因型可能对学术界和养鱼业中小型实验室中的疫苗和诊断应用具有重要益处。用于同时检测最普遍的NodaVirus基因型(RGNNV和SJNV)的双侧流体体传感器进行了显着和优化。双生物传感器由两种基于抗体的测试区组成,指示每种基因型和对照区。通过用抗生物素抗体官能化的金纳米颗粒可视化正信号,并且检测在20分钟内完成。优化研究包括抗体类型和测试区结构的量测定,高信号产生的金纳米粒子缀合物类型选择,以及检测测定参数测定。优化后,将生物传感器用健康和RGNNV-NodaVirus感染的鱼类样品进行评估。拟议的检验成本估计少于3欧元,包括所需的试剂和生物传感器。这项工作提出了对NodaVirus基因分型进行双侧流动生物传感器的重要步骤;在测试适用于诊断试剂盒发育之前,需要使用临床样品进行进一步评估。

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