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用于毛细管电泳的电场增强背向散射干涉测量检测

Electric field-enhanced backscatter interferometry detection for capillary electrophoresis.

作者信息

De Silva Miyuru, Dunn Robert C

机构信息

Department of Chemistry, University of Kansas, Lawrence, KS, 66047, USA.

出版信息

Sci Rep. 2024 Jan 24;14(1):2110. doi: 10.1038/s41598-024-52621-3.

Abstract

Backscatter interferometry (BSI) is a refractive index (RI) detection method that is easily integrated with capillary electrophoresis (CE) and is capable of detecting species ranging from inorganic ions to proteins without additional labels or contrast agents. The BSI signal changes linearly with the square of the separation voltage which has been used to quantify sample injection, but has not been explored as a potential signal enhancement mechanism in CE. Here we develop a mathematical model that predicts a signal enhancement at high field strengths, where the BSI signal is dominated by the voltage dependent mechanism. This is confirmed in both simulation and experiment, which show that the analyte peak area grows linearly with separation voltage at high field strengths. This effect can be exploited by adjusting the background electrolyte (BGE) to increase the conductivity difference between the BGE and analyte zones, which is shown to improve BSI performance. We also show that this approach has utility in small bore capillaries where larger separation fields can be applied before excess Joule heating degrades the separation. Unlike other optical detection methods that generally degrade as the optical pathlength is reduced, the BSI signal-to-noise can improve in small bore capillaries as the larger separation fields enhance the signal.

摘要

背散射干涉测量法(BSI)是一种折射率(RI)检测方法,它易于与毛细管电泳(CE)集成,并且能够在无需额外标记或造影剂的情况下检测从无机离子到蛋白质等各种物质。BSI信号与分离电压的平方呈线性变化,分离电压已被用于定量样品进样,但尚未作为毛细管电泳中潜在的信号增强机制进行探索。在此,我们开发了一个数学模型,该模型预测在高场强下会出现信号增强,此时BSI信号主要由电压依赖机制主导。这在模拟和实验中均得到证实,模拟和实验表明,在高场强下分析物峰面积随分离电压呈线性增长。通过调整背景电解质(BGE)以增加BGE与分析物区域之间的电导率差异,可以利用这种效应,这已被证明可改善BSI性能。我们还表明,这种方法在小内径毛细管中有用,在小内径毛细管中,在过量焦耳热降低分离效果之前可以施加更大的分离场。与其他通常随着光程长度减小而性能下降的光学检测方法不同,由于更大的分离场增强了信号,小内径毛细管中的BSI信噪比可以提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcd5/10808210/f2937a3c5a6f/41598_2024_52621_Fig1_HTML.jpg

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