Ymeti Aurel, Subramaniam Vinod, Beumer Tom A M, Kanger Johannes S
Biophysical Engineering, MESA, Faculty of Science and Technology, University of Twente, 7500 AE Enschede, The Netherlands.
Expert Rev Med Devices. 2007 Jul;4(4):447-54. doi: 10.1586/17434440.4.4.447.
Future viral outbreaks are a major threat to societal and economic development throughout the world. A rapid, sensitive and easy-to-use test for viral infections is essential to prevent and control such viral pandemics. Furthermore, a compact, portable device is potentially very useful in remote or developing regions without easy access to sophisticated laboratory facilities. In this report we discuss the application of a Young interferometer sensor device for ultrasensitive and real-time detection of viruses. The essential innovation in this technique is the combination of an integrated optical interferometric sensor with antibody-antigen recognition approaches to yield very sensitive, rapid virus detection. The technology is amenable to miniaturization and mass production and, thus, has significant potential to be developed into a handheld, point-of-care device.
未来的病毒爆发对全球社会和经济发展构成重大威胁。一种快速、灵敏且易于使用的病毒感染检测方法对于预防和控制此类病毒大流行至关重要。此外,一种紧凑、便携的设备在难以获得先进实验室设施的偏远或发展中地区可能非常有用。在本报告中,我们讨论了一种杨氏干涉仪传感器设备在超灵敏和实时检测病毒方面的应用。该技术的关键创新在于将集成光学干涉传感器与抗体 - 抗原识别方法相结合,以实现非常灵敏、快速的病毒检测。该技术易于小型化和大规模生产,因此具有很大的潜力被开发成一种手持式即时检测设备。