Takemura Kenshin, Satoh Jun, Boonyakida Jirayu, Park Sungjo, Chowdhury Ankan Dutta, Park Enoch Y
Laboratory of Biotechnology, Department of Bioscience, Graduate School of Science and Technology, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka, 422-8529, Japan.
Division of Pathology, Department of Aquaculture Research, Fisheries Technology Institute of Japan Fisheries Research and Education Agency, National Research and Development Agency, Tamaki Field Station, 224-1 Hiruta, Tamaki, Watarai, Mie, 519-0423, Japan.
J Nanobiotechnology. 2020 Oct 27;18(1):152. doi: 10.1186/s12951-020-00712-4.
With the enormous increment of globalization and global warming, it is expected that the number of newly evolved infectious diseases will continue to increase. To prevent damage due to these infections, the development of a diagnostic method for detecting a virus with high sensitivity in a short time is highly desired. In this study, we have developed a disposable electrode with high-sensitivity and accuracy to evaluate its performances for several target viruses.
Conductive silicon rubber (CSR) was used to fabricate a disposable sensing matrix composed of nitrogen and sulfur-co-doped graphene quantum dots (N,S-GQDs) and a gold-polyaniline nanocomposite (AuNP-PAni). A specific anti-white spot syndrome virus (WSSV) antibody was conjugated to the surface of this nanocomposite, which was successfully applied for the detection of WSSV over a wide linear range of concentration from 1.45 × 10 to 1.45 × 10 DNA copies/ml, with a detection limit as low as 48.4 DNA copies/ml.
The engineered sensor electrode can retain the detection activity up to 5 weeks, to confirm its long-term stability, required for disposable sensing applications. This is the first demonstration of the detection of WSSV by a nanofabricated sensing electrode with high sensitivity, selectivity, and stability, providing as a potential diagnostic tool to monitor WSSV in the aquaculture industry.
随着全球化和全球变暖的急剧增加,预计新出现的传染病数量将持续上升。为防止这些感染造成损害,迫切需要开发一种能在短时间内高灵敏度检测病毒的诊断方法。在本研究中,我们开发了一种具有高灵敏度和准确性的一次性电极,以评估其对几种目标病毒的检测性能。
采用导电硅橡胶(CSR)制备了一种一次性传感基质,其由氮和硫共掺杂的石墨烯量子点(N,S-GQDs)和金-聚苯胺纳米复合材料(AuNP-PAni)组成。一种特异性抗白斑综合征病毒(WSSV)抗体与该纳米复合材料表面偶联,成功应用于WSSV的检测,检测浓度范围为1.45×10至1.45×10 DNA拷贝/毫升,检测限低至48.4 DNA拷贝/毫升。
该工程化传感电极可保持检测活性长达5周,以证实其一次性传感应用所需的长期稳定性。这是首次展示纳米制造的传感电极对WSSV的高灵敏度、高选择性和高稳定性检测,为水产养殖业监测WSSV提供了一种潜在的诊断工具。