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基于树枝状介孔硅纳米粒子表面化学的量子点富集及超灵敏侧向流免疫分析的合理设计。

Rational Design of Dendritic Mesoporous Silica Nanoparticles' Surface Chemistry for Quantum Dot Enrichment and an Ultrasensitive Lateral Flow Immunoassay.

机构信息

Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, Queensland 4072, Australia.

School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200241, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 May 12;13(18):21507-21515. doi: 10.1021/acsami.1c02149. Epub 2021 May 3.

Abstract

Lateral flow immunoassays (LFIAs) have drawn much attention in point-of-care diagnostic applications, and the development of high-performance label materials is the key. In this study, the impact of the surface chemistry of dendritic mesoporous silica nanoparticles (DMSNs) on their enrichment performance toward quantum dots (QDs) and signal amplification of the resultant DMSNs-QDs as label materials have been investigated. A series of DMSNs with controllable amino/thiol group densities have been synthesized. It is demonstrated that the amino groups are beneficial for QD fluorescence preservation, owing to the amino-based surface passivation, while the thiol groups are responsible for increasing the loading capacity of QDs due to the thiol-metal coordination. The optimized DMSNs-QDs labels with an amino density of 153 μmol g and a thiol density of 218 μmol g displayed sufficient QD fluorescence preservation (89.4%) and high QD loading capacity (1.55 g g). Ultrasensitive detection of serum amyloid A (SAA) with a detection limit of 10 pg mL with the naked eye was achieved, which is 1 order of magnitude higher than that reported in the literature. This study provides insights into the development of advanced label materials and an ultrasensitive LFIA for future bioassay applications.

摘要

侧向流动免疫分析(LFIAs)在即时诊断应用中引起了广泛关注,而高性能标记材料的开发是关键。在这项研究中,研究了树枝状介孔硅纳米粒子(DMSNs)的表面化学对其在量子点(QDs)上的富集性能以及所得 DMSNs-QDs 作为标记材料的信号放大的影响。合成了一系列具有可控氨基/硫醇密度的 DMSNs。结果表明,由于基于氨基的表面钝化,氨基有利于 QD 荧光的保持,而由于硫醇-金属配位,硫醇基团则负责增加 QD 的负载能力。氨基密度为 153 μmol g,巯基密度为 218 μmol g 的优化 DMSNs-QDs 标记物具有足够的 QD 荧光保持率(89.4%)和高的 QD 负载能力(1.55 g g)。通过肉眼实现了对血清淀粉样蛋白 A(SAA)的超灵敏检测,检测限为 10 pg mL,比文献报道的检测限高 1 个数量级。这项研究为先进的标记材料的开发和未来生物分析应用的超灵敏 LFIA 提供了新的思路。

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