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捕获抗体在金纳米粒子上的定向排列以提高基于 ELISA 的医疗器械的灵敏度。

Orientation of capture antibodies on gold nanoparticles to improve the sensitivity of ELISA-based medical devices.

机构信息

Department of Translational Research and of New Surgical and Medical Technologies, University of Pisa, Via Savi 10, Pisa, 56126, Italy.

Department of Chemistry "Ugo Schiff" & Center for Colloid and Surface Science (CSGI), University of Florence, Via Della Lastruccia 3, Sesto Fiorentino, 50019, Florence, Italy.

出版信息

Talanta. 2023 Aug 1;260:124650. doi: 10.1016/j.talanta.2023.124650. Epub 2023 May 5.

Abstract

The sensitivity of ELISA-based devices strongly depends on the right orientation of antibodies on the sensor surface. The aim of this work was to increase the analytical performance of a commercial ELISA-based medical device (VIDAS®), thanks to the specific orientation of antibodies on gold nanostructured disposables. For this purpose, fPSA VIDAS® assay was used as model and the disposable providing the antigen binding surface (SPR®) was functionalized with gold nanostructures coated with monovalent half-fragment antibodies (reduced IgG, rIgG). The functionalization of polystyrene SPRs® with gold nanostructures was achieved through a one-step incubation of gold dispersions in a mixture of non-toxic solvents. Five different concentrations of gold nanoparticles (NPs) were tested with a maximum fluorescence enhancement for NPs density around 3-8 *10 NPs/μm (752 ± 11 RFV vs 316 ± 5 RFV of bare SPRs®). The comparison of the dose-response curve obtained with commercial and gold coated-SPRs® revealed a significant improvement (p < 0.0001) of the analytical sensitivity of the VIDAS® system using nanostructured disposables. This improved version of SPRs® allows to distinguish small variations of fPSA concentrations opening the way to the application of this biomarker to other kinds of cancer as recently described in the literature.

摘要

基于 ELISA 的设备的灵敏度强烈依赖于抗体在传感器表面的正确取向。本工作的目的是通过在金纳米结构耗材上实现抗体的特异性定向,来提高商用基于 ELISA 的医疗设备(VIDAS®)的分析性能。为此,使用游离前列腺特异性抗原(fPSA)VIDAS®分析作为模型,并通过将抗原结合表面(SPR®)功能化来实现,该表面功能化是通过将金纳米结构与单价半片段抗体(还原 IgG,rIgG)涂层来实现的。通过将金分散体在无毒溶剂混合物中一步孵育,实现了聚苯乙烯 SPRs®的金纳米结构功能化。测试了五种不同浓度的金纳米颗粒(NPs),最大荧光增强出现在 NPs 密度约为 3-8 *10 NPs/μm 时(与裸 SPRs®的 752 ± 11 RFV 相比,752 ± 11 RFV)。使用商业和金涂覆 SPRs®获得的剂量反应曲线的比较表明,使用纳米结构耗材显著提高了 VIDAS®系统的分析灵敏度(p < 0.0001)。这种改进的 SPRs®版本可以区分游离前列腺特异性抗原浓度的微小变化,为该生物标志物在其他类型的癌症中的应用开辟了道路,正如文献中最近所描述的那样。

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