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用于提高检测区条带强度的疟疾快速诊断试纸条光密度优化

Optical Density Optimization of Malaria Pan Rapid Diagnostic Test Strips for Improved Test Zone Band Intensity.

作者信息

Manta Prince, Nagraik Rupak, Sharma Avinash, Kumar Akshay, Verma Pritt, Paswan Shravan Kumar, Bokov Dmitry O, Shaikh Juber Dastagir, Kaur Roopvir, Leite Ana Francesca Vommaro, Filho Silas Jose Braz, Shiwalkar Nimisha, Persaud Purnadeo, Kapoor Deepak N

机构信息

School of Pharmaceutical Sciences, Shoolini University of Biotechnology and Management Sciences, Solan 173212, India.

School of Bioengineering and Food Technology, Shoolini University of Biotechnology and Management Sciences, Solan 173212, India.

出版信息

Diagnostics (Basel). 2020 Oct 29;10(11):880. doi: 10.3390/diagnostics10110880.

Abstract

For the last few decades, the immunochromatographic assay has been used for the rapid detection of biological markers in infectious diseases in humans and animals The assay, also known as lateral flow assay, is utilized for the detection of antigen or antibody in human infectious diseases. There are a series of steps involved in the development of these immuno-chromatographic test kits, from gold nano colloids preparation to nitrocellulose membrane coating (NCM). These tests are mostly used for qualitative assays by a visual interpretation of results. For the interpretation of the results, the color intensity of the test zone is therefore very significant. Herein, the study was performed on a malaria antigen test kit. Several studies have reported the use of gold nanoparticles (AuNPs) with varying diameters and its binding with various concentrations of protein in order to optimize tests. However, none of these studies have reported how to fix (improve) test zone band intensity (color), if different sized AuNPs were synthesized during a reaction and when conjugated equally with same amount of protein. Herein, different AuNPs with average diameter ranging from 10 nm to 50 nm were prepared and conjugated equally with protein concentration of 150 µg/mL with K = 1.0 × 10. Afterwards, the developed kits' test zone band intensity for all different sizes AuNPs was fixed to the same band level (high) by utilization of an ultraviolet-visible spectrophotometer. The study found that the same optical density (OD) has the same test zone band intensity irrespective of AuNP size. This study also illustrates the use of absorption maxima (λ max) techniques to characterize AuNPs and to prevent wastage of protein while developing immunochromatographic test kits.

摘要

在过去几十年中,免疫层析检测法一直用于快速检测人和动物传染病中的生物标志物。该检测法,也称为侧向流动检测法,用于检测人类传染病中的抗原或抗体。从金纳米胶体的制备到硝酸纤维素膜包被(NCM),这些免疫层析检测试剂盒的开发涉及一系列步骤。这些检测大多通过对结果的目视解读用于定性分析。因此,对于结果的解读,检测区的颜色强度非常重要。在此,对一种疟疾抗原检测试剂盒进行了研究。几项研究报告了使用不同直径的金纳米颗粒(AuNPs)及其与不同浓度蛋白质的结合,以优化检测。然而,这些研究均未报告,如果在反应过程中合成了不同尺寸的AuNPs且与等量蛋白质等比例缀合,如何固定(提高)检测区条带强度(颜色)。在此,制备了平均直径从10纳米到50纳米的不同AuNPs,并将其与浓度为150 µg/mL的蛋白质等比例缀合,结合常数K = 1.0×10。之后,利用紫外可见分光光度计将所有不同尺寸AuNPs的已开发试剂盒的检测区条带强度固定到相同的条带水平(高)。研究发现,无论AuNP尺寸如何,相同的光密度(OD)具有相同的检测区条带强度。本研究还说明了在开发免疫层析检测试剂盒时,使用最大吸收波长(λ max)技术来表征AuNPs并防止蛋白质浪费。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa44/7692095/b388c03458ab/diagnostics-10-00880-g001.jpg

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