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聚己内酯电纺堆叠垫用于增强灵敏度的竞争性侧向流动免疫分析:全血中的发情期测定

Sensitivity-enhanced competitive lateral flow immunoassays by polycaprolactone electrospun stacking pad: Estrous determination in whole blood.

作者信息

Torné-Morató Helena, Pesenti Lucia, Triphaty Vinay, Pompa Pier Paolo

机构信息

Nanobiointeractions&Nanodiagnostics, Istituto Italiano di Tecnologia (IIT), Via Morego, 30, 16163, Genova, Italy; Department of Chemistry and Industrial Chemistry, University of Genova, Via Dodecaneso, 31, 16146, Genova, Italy.

Nanobiointeractions&Nanodiagnostics, Istituto Italiano di Tecnologia (IIT), Via Morego, 30, 16163, Genova, Italy.

出版信息

Biosens Bioelectron. 2025 Mar 1;271:117080. doi: 10.1016/j.bios.2024.117080. Epub 2024 Dec 21.

Abstract

Lateral flow assays (LFA) are widely adopted in point-of-care diagnostics across a spectrum of applications, due to their simplicity of use and cost-effectiveness. However, in complex biological matrices (e.g., whole blood), LFA sensitivity and analytical performance may be lower than those of laboratory-based techniques. Here, we introduce a polycaprolactone electrospun stacking pad designed to enhance the sensitivity of competitive LFAs. The stacking pad works as an automated pre-incubation step, promoting the analyte interaction with antibody conjugated gold nanoparticles, without affecting the test strip's flow dynamics. We assessed that the stacking pad allows accurate tuning of the flow rate, resulting in a significant increase in sensitivity in whole bovine blood, thereby achieving the required performance for the naked-eye detection of progesterone at the estrous threshold level (2 ng mL⁻). The proposed method shows promising potential for broad adaptation to other immunoassays that demand enhanced sensitivity for on-site diagnostics.

摘要

侧向流动分析(LFA)因其使用简便且具有成本效益,在即时诊断的一系列应用中被广泛采用。然而,在复杂的生物基质(如全血)中,LFA的灵敏度和分析性能可能低于基于实验室的技术。在此,我们介绍一种聚己内酯电纺堆叠垫,其设计目的是提高竞争性LFA的灵敏度。该堆叠垫起到自动预孵育步骤的作用,促进分析物与抗体偶联金纳米颗粒的相互作用,同时不影响试纸条的流动动力学。我们评估发现,该堆叠垫能够精确调节流速,从而显著提高全牛血中的灵敏度,进而实现对发情阈值水平(2 ng mL⁻)孕酮进行肉眼检测所需的性能。所提出的方法显示出广阔的应用前景,有望广泛适用于其他需要提高现场诊断灵敏度的免疫分析。

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