Suppr超能文献

简单的几何修饰可显著增强侧向流动免疫层析分析的颜色强度和检测限。

Simple geometrical modifications for substantial color intensity and detection limit enhancements in lateral-flow immunochromatographic assays.

机构信息

Sensors and Integrated Bio-Microfluidics/MEMS Lab, School of Mechanical Engineering, Iran University of Science & Technology, Tehran, Iran.

Applied Multi-Phase Fluid Dynamics Lab., School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2019 Mar 15;1110-1111:1-8. doi: 10.1016/j.jchromb.2019.01.019. Epub 2019 Jan 26.

Abstract

One of the ongoing challenges in lateral flow Immunochromatographic assays (LFIA), is lowering the limit of detection and enhancing their signal quality, i.e. the color intensity. There are a number of rather costly and complicated processes for this aim, such as the use of functionalized materials/membranes and additional spectroscopic readout units. Nonetheless, there are simple and easy to practice alternatives, to be uncovered by analyzing the essential parameters of immunological reactions. The color intensity of the test line is a function of analytes flow velocity and their reaction rate. Detection pad width and test line position impact the flow velocity and reaction rate kinetics, examined in this paper for the limit of detection (LOD) and test-line color intensity. Firstly, the impact of width on the LOD was examined for human chorionic gonadotropin (pregnancy biomarker). Test line color intensity was measured using five different widths of the detection pad (trapezoidal) and four different test line positions, and the trends observed were explained according to the measured evolution of the velocity along the chromatography paper. With a constant width absorbent pad, LOD was cut by half to 5 mIU/ml by using a narrowing width detection pad, which keeps the wicking velocity higher than normal strips, and compared to them, color intensity increase between 55 and 150%, depending on the concentration. Nevertheless, a widening detection pad might cut the color intensity up to 150%, compared to normal strips, due to a profound decline of the analyte to ligand ratio at the test line. In addition, adequately sending the test line away from the conjugate pad yields the highest possible color intensity, for up to 400% of increase, in lower concentrations and narrowing test pads. However, further distancing the test line downfalls the color intensity.

摘要

在侧向流动免疫层析分析(LFIA)中,一个持续存在的挑战是降低检测限并提高其信号质量,即颜色强度。为此,有许多相当昂贵和复杂的过程,例如使用功能化材料/膜和额外的光谱读出单元。尽管如此,还是有一些简单易用的替代方法,可以通过分析免疫反应的基本参数来发现。测试线的颜色强度是分析物流速和反应速率的函数。检测垫的宽度和测试线的位置会影响流速和反应速率动力学,本文研究了检测限(LOD)和测试线颜色强度的这些参数。首先,研究了宽度对人绒毛膜促性腺激素(妊娠生物标志物)的 LOD 的影响。使用五种不同宽度的检测垫(梯形)和四种不同的测试线位置来测量测试线的颜色强度,并根据沿层析纸测量的速度演变来解释观察到的趋势。在使用变窄的检测垫时,LOD 可以减半至 5 mIU/ml,而检测垫的宽度保持比常规条带更高的吸液速度,与常规条带相比,颜色强度增加了 55%至 150%,具体取决于浓度。然而,由于测试线上分析物与配体的比例大幅下降,与常规条带相比,检测垫变宽可能会使颜色强度降低高达 150%。此外,将测试线适当地远离结合垫可以获得尽可能高的颜色强度,在较低浓度和变窄的测试垫下,最高可增加 400%。然而,进一步使测试线远离会使颜色强度降低。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验