Gilboa Tal, Meller Amit
Department of Biomedical Engineering, The Technion - Israel Institute of Technology, Haifa, Israel 32000.
Analyst. 2015 Jul 21;140(14):4733-47. doi: 10.1039/c4an02388a. Epub 2015 Feb 16.
The field of nanopore sensing has been gaining increasing attention. Much progress has been made towards biotechnological applications that involve electrical measurements of temporal changes in the ionic current flowing through the pore. But in many cases the electrical signal is restricted by the non-ideal noise components, limited throughput, and insufficient temporal or spatial resolutions. To address these limitations, high-sensitivity optical detection techniques that complement the electrical measurements have been developed. The optical techniques involve high-bandwidth, multicolor and high-throughput measurements. Here we review the recent advancements and developments that have been taking place in the field of optical sensing in solid-state nanopores. We describe the main optical methods used in this field involving total internal reflection and confocal microscopy in addition to sophisticated background suppression strategies. We further present the phenomenon of light induced analyte manipulation at the pore and the contribution of the optical sensing approach to possible nanopore sensing applications such as optical based DNA sequencing using nanopores.
纳米孔传感领域越来越受到关注。在涉及对流过孔的离子电流的时间变化进行电学测量的生物技术应用方面已经取得了很大进展。但在许多情况下,电信号受到非理想噪声成分、有限的通量以及不足的时间或空间分辨率的限制。为了解决这些限制,已经开发了补充电学测量的高灵敏度光学检测技术。这些光学技术涉及高带宽、多色和高通量测量。在这里,我们回顾了固态纳米孔光学传感领域最近的进展和发展。我们描述了该领域使用的主要光学方法,包括全内反射和共聚焦显微镜,以及复杂的背景抑制策略。我们还介绍了在孔处光诱导分析物操纵的现象以及光学传感方法对可能的纳米孔传感应用(如使用纳米孔的基于光学的DNA测序)的贡献。