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使用带有磁性生物共轭物的侧向流动分析法在细胞角蛋白19片段21-1检测中提高分析性能:磁性和光学记录的整合与比较

Enhanced Analytical Performance in CYFRA 21-1 Detection Using Lateral Flow Assay with Magnetic Bioconjugates: Integration and Comparison of Magnetic and Optical Registration.

作者信息

Skirda Artemiy M, Orlov Alexey V, Malkerov Juri A, Znoyko Sergey L, Rakitina Alexandra S, Nikitin Petr I

机构信息

Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilov Street, 119991 Moscow, Russia.

Moscow Center for Advanced Studies, Kulakova Str. 20, 123592 Moscow, Russia.

出版信息

Biosensors (Basel). 2024 Dec 11;14(12):607. doi: 10.3390/bios14120607.

Abstract

A novel approach to developing lateral flow assays (LFAs) for the detection of CYFRA 21-1 (cytokeratin 19 fragment, a molecular biomarker for epithelial-origin cancers) is proposed. Magnetic bioconjugates (MBCs) were employed in combination with advanced optical and magnetic tools to optimize assay conditions. The approach integrates such techniques as label-free spectral-phase interferometry, colorimetric detection, and ultrasensitive magnetometry using the magnetic particle quantification (MPQ) technique. For the first time in LFA applications, the MPQ-based and colorimetry-based detection methods were compared side by side, and superior analytical performance was demonstrated. The limit of detection (LOD) of 0.9 pg/mL was achieved using MPQ, and 2.9 pg/mL with optical detection. This study has demonstrated that MPQ provides elimination of signal saturation, higher sensitivity (slope of the calibration curve), and a 19-fold wider dynamic range of detected signals. Both optical and magnetic detection results are comparable to the best laboratory-based tests with the added benefits of a 20-min assay duration and the LFA format convenience. The assay effectiveness was validated in human serum and artificial saliva, and high recovery rates were observed. The proposed approach offers rapid and reliable detection of molecular biomarkers and holds significant potential for point-of-care diagnostics, particularly in resource-limited settings.

摘要

本文提出了一种开发用于检测CYFRA 21-1(细胞角蛋白19片段,一种上皮源性癌症的分子生物标志物)的侧向流动分析(LFA)的新方法。磁生物共轭物(MBC)与先进的光学和磁性工具结合使用,以优化分析条件。该方法整合了诸如无标记光谱相位干涉测量、比色检测以及使用磁颗粒定量(MPQ)技术的超灵敏磁力测量等技术。在LFA应用中,首次将基于MPQ的检测方法和基于比色法的检测方法进行了并排比较,并展示了卓越的分析性能。使用MPQ实现的检测限(LOD)为0.9 pg/mL,光学检测为2.9 pg/mL。本研究表明,MPQ可消除信号饱和,具有更高的灵敏度(校准曲线斜率),并且检测信号的动态范围宽19倍。光学和磁性检测结果均与最佳的基于实验室的检测相当,且具有20分钟的检测时长和LFA形式便利性等额外优势。该分析方法在人血清和人工唾液中得到了验证,回收率较高。所提出的方法能够快速、可靠地检测分子生物标志物,在即时诊断方面具有巨大潜力,尤其是在资源有限的环境中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c90f/11674727/a1911bfcd67d/biosensors-14-00607-g001.jpg

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