Kannangai R, Abraham A M, Sankar S, Sridharan G
Department of Clinical Virology, Christian Medical College, Vellore - 632 004, India.
Indian J Med Microbiol. 2010 Apr-Jun;28(2):95-9. doi: 10.4103/0255-0857.62482.
The development and potential application of nanotechnology tools for single-virus particle detection by emergent nanotechnology is likely to revolutionize diagnosis and determining treatment endpoints for life threatening virus infections. Direct detection of biological macromolecules using semiconducting nanowires or carbon nanotubes for electrical field change measurements is a milestone application in this field. The promise of selective detection at a single particle level (stochastic sensing) with nanowire or nanotube field-effect transistor-based devices is a major breakthrough for outbreak situations, where a rapid and specific detection of the viral agent allows intervention at public health level. The same technology would be eminently suitable for bedside diagnosis and therapeutic intervention.
新兴纳米技术用于单病毒颗粒检测的纳米技术工具的开发及其潜在应用,可能会彻底改变对危及生命的病毒感染的诊断和治疗终点的判定。使用半导体纳米线或碳纳米管进行电场变化测量来直接检测生物大分子,是该领域的一个里程碑式应用。基于纳米线或纳米管场效应晶体管的设备在单颗粒水平进行选择性检测(随机传感)的前景,对于疫情爆发情况而言是一项重大突破,因为对病毒病原体进行快速、特异性检测能够在公共卫生层面进行干预。同样的技术将非常适合床边诊断和治疗干预。