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Quantification of Virus Particles Using Nanopore-Based Resistive-Pulse Sensing Techniques

机译:使用基于纳米孔的电阻脉冲传感技术对病毒颗粒进行定量

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摘要

Viruses have drawn much attention in recent years due to increased recognition of their important roles in virology, immunology, clinical diagnosis, and therapy. Because the biological and physical properties of viruses significantly impact their applications, quantitative detection of individual virus particles has become a critical issue. However, due to various inherent limitations of conventional enumeration techniques such as infectious titer assays, immunological assays, and electron microscopic observation, this issue remains challenging. Thanks to significant advances in nanotechnology, nanostructure-based electrical sensors have emerged as promising platforms for real-time, sensitive detection of numerous bioanalytes. In this paper, we review recent progress in nanopore-based electrical sensing, with particular emphasis on the application of this technique to the quantification of virus particles. Our aim is to provide insights into this novel nanosensor technology, and highlight its ability to enhance current understanding of a variety of viruses.
机译:近年来,由于人们越来越认识到病毒在病毒学,免疫学,临床诊断和治疗中的重要作用,病毒引起了人们的广泛关注。由于病毒的生物学和物理特性极大地影响了它们的应用,因此单个病毒颗粒的定量检测已成为一个关键问题。但是,由于常规枚举技术的各种固有局限性,例如传染性滴度测定,免疫测定和电子显微镜观察,此问题仍然具有挑战性。由于纳米技术的重大进步,基于纳米结构的电传感器已成为有前途的平台,可对多种生物分析物进行实时,灵敏的检测。在本文中,我们回顾了基于纳米孔的电传感技术的最新进展,特别强调了该技术在病毒颗粒定量中的应用。我们的目的是提供对这种新颖的纳米传感器技术的见解,并突出其增强当前对多种病毒的了解的能力。

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