Omnics Research Group, Department of Mathematics and Physics, University of Salento, CNR-Institute of Nanotechnology, INFN Sezione di Lecce, Via per Monteroni, 73100 Lecce, Italy.
Department of Biological and Environmental Sciences and Technologies, University of Salento, Via Monteroni, 73100 Lecce, Italy.
Biosensors (Basel). 2022 Feb 27;12(3):147. doi: 10.3390/bios12030147.
The Grapevine leafroll-associated virus 3 (GLRaV-3) and the Grapevine fanleaf virus (GFLV) are pathogens reported in many grapevine-growing areas all over the world, main causal agents of grapevine leafroll disease and grapevine fanleaf disease, respectively. Prevention of virus spread thanks to rapid diagnosis of infected plants is a key factor for control of both diseases. Although serological (e.g., enzyme-linked immunosorbent assay-ELISA test) and molecular methods are available to reveal the presence of the viruses, they turn out to be quite expensive, time-consuming and laborious, especially for large-scale health screening. Here we report the optimization of a lab-on-a-chip (LOC) for GLRaV-3 and GFLV detection, based on an electrochemical transduction and a microfluidic multichamber design for measurements in quadruplicate and simultaneous detection of both targets. The LOC detect GLRaV-3 and GFLV at dilution factors more than 15 times higher than ELISA, providing a higher sensitivity in the detection of both viruses. Furthermore, the platform offers several advantages as easy-to-use, rapid-test, portability and low costs, favoring its potential application for large-scale monitoring programs. Compared to other grapevine virus biosensors, our sensing platform is the first one to provide a dose-dependent calibration curve combined with a microfluidic module for sample analysis and a portable electronics providing an operator-independent read-out scheme.
葡萄卷叶相关病毒 3(GLRaV-3)和葡萄扇叶病毒(GFLV)是世界上许多葡萄种植区报道的病原体,分别是葡萄卷叶病和葡萄扇叶病的主要致病因子。由于能够快速诊断感染植物,因此防止病毒传播是控制这两种疾病的关键因素。尽管可用于揭示病毒存在的血清学(例如酶联免疫吸附测定-ELISA 测试)和分子方法,但它们的结果非常昂贵,费时费力,尤其是在大规模健康筛查方面。在这里,我们报告了一种基于电化学生物传感器和微流控多腔室设计的用于 GLRaV-3 和 GFLV 检测的片上实验室(LOC)的优化,用于四重测量和同时检测两种靶标。该 LOC 可检测 GLRaV-3 和 GFLV 的稀释倍数比 ELISA 高 15 倍以上,从而提高了两种病毒的检测灵敏度。此外,该平台具有易于使用,快速测试,便携性和低成本等优势,有利于其在大规模监测计划中的潜在应用。与其他葡萄病毒生物传感器相比,我们的传感平台是第一个提供剂量依赖性校准曲线的平台,结合了用于样品分析的微流控模块和提供独立于操作人员的读数方案的便携式电子设备。