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Quantitative Analysis in Capillary Electrophoresis: Transformation of Raw Electropherograms into Continuous Distributions

机译:毛细管电泳中的定量分析:将原始电泳图转换为连续分布

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摘要

Optical sensing of solid-state nanopores is a relatively new approach that can enable high-throughput, multicolor readout from a collection of nanopores. It is therefore highly attractive for applications such as nanopore-based DNA sequencing and genotyping using DNA barcodes. However, to date optical readout has been plagued by the need to achieve sufficiently high signal-to-noise ratio (SNR) for single fluorophore sensing, while still maintaining millisecond resolution. One of the main factors degrading the optical SNR in solid-state nanopores is the high photoluminescence (PL) background emanating from the silicon nitride (SiNx) membrane in which pores are commonly fabricated. Focusing on the optical properties of SiNx nanopores we show that the local membrane PL intensity is substantially reduced, and its spectrum is shifted toward shorter wavelengths with increasing e-beam dose. This phenomenon, which is correlated with a marked photocurrent enhancement in these nanopores, is utilized to perform for the first time single molecule fluorescence detection using both green and red laser excitations. Specifically, the reduction in PL and the concurrent measurement of the nanopore photocurrent enhancement allow us to maximize the background suppression and to detect a dual color, five-unit DNA barcode with high SNR levels.
机译:固态纳米孔的光学传感是一种相对较新的方法,可以实现从一系列纳米孔中进行高通量多色读取。因此,它对于诸如基于纳米孔的DNA测序和使用DNA条形码的基因分型等应用具有高度吸引力。然而,迄今为止,由于需要为单荧光团传感实现足够高的信噪比(SNR),同时仍保持毫秒级分辨率,困扰着光学读出。降低固态纳米孔中光学SNR的主要因素之一是源自通常在其中制造孔的氮化硅(SiNx)膜发出的高光致发光(PL)背景。着眼于SiNx纳米孔的光学性能,我们发现局部膜PL强度显着降低,并且随着电子束剂量的增加,其光谱向较短的波长移动。与这些纳米孔中显着的光电流增强相关的这种现象被首次用于使用绿色和红色激光激发进行单分子荧光检测。具体而言,PL的降低和纳米孔光电流增强的同时测量使我们能够最大化背景抑制并检测具有高SNR水平的双色五单元DNA条码。

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