Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371.
Analyst. 2013 Nov 7;138(21):6219-29. doi: 10.1039/c3an01394d.
Various infectious diseases caused by the spread of viruses create adverse implications on global biosecurity. Increasing demands for virus surveillance and effective control of the spread of diseases reveal the need for rapid and sensitive virus diagnostic devices. Due to the remarkable sensitivity and specificity of biosensors, they appear as a potential and promising tool for accurate and quantitative detection of viruses. Furthermore, recent advancements in transduction systems, nanotechnology and genetic engineering offer various strategies to improve the detection performance of biosensors. This review presents an overview of the current states of novel biosensing methodologies for the ultrasensitive detection of viruses with highly promising applications for future disease diagnosis. Additionally, a brief summary of the recent state-of-the-art virus diagnostic molecular technologies is included.
各种由病毒传播引起的传染病对全球生物安全造成了不利影响。对病毒监测和疾病传播有效控制的需求日益增长,这凸显了对快速、灵敏的病毒诊断设备的需求。由于生物传感器具有显著的灵敏度和特异性,因此它们成为准确、定量检测病毒的潜在、有前途的工具。此外,转导系统、纳米技术和遗传工程的最新进展为提高生物传感器的检测性能提供了各种策略。本综述概述了用于超灵敏检测病毒的新型生物传感方法的最新进展,这些方法具有未来疾病诊断的高度应用前景。此外,还简要总结了最新的病毒诊断分子技术。