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超稳定的银纳米盘:用于比色检测的高效多功能比色报告试剂。

Ultra-stable silver nanoplates: efficient and versatile colorimetric reporters for dipstick assays.

机构信息

Engineering of Molecular NanoSystems, Ecole Polytechnique de Bruxelles, Université libre de Bruxelles (ULB), avenue F. D. Roosevelt 50, CP165/64, B-1050 Brussels, Belgium.

Laboratoire de Chimie Organique, Université libre de Bruxelles (ULB), avenue F. D. Roosevelt 50, CP160/06, B-1050 Brussels, Belgium.

出版信息

Nanoscale. 2023 Jul 20;15(28):11981-11989. doi: 10.1039/d3nr02378h.

Abstract

Noble metal anisotropic nanostructures, such as silver nanoplates (AgNPls), are interesting because they possess enhanced plasmonic properties compared to their spherical counterparts: increased extinction coefficient and tunable maximum of absorption wavelength. However, their use for biosensing application is limited as these structures are intrinsically unstable and, to maintain the anisotropic structure, a coating protecting the metallic surface is required. In this work, we report on the capacity of a thin but robust coating based on calixarene-diazonium salts to maintain the structure anisotropy of silver nanoplates in conditions in which traditionally used coatings fail. We synthesized AgNPls of various sizes and coated them with two different calixarenes, differing by the functional groups attached to their small rim. After characterization of the efficiency of the ligand exchange process between the initial citrate anions and the calixarenes, the chemical and colloidal stabilities of the resulting calixarene-coated AgNPls were compared to citrate-capped AgNPls. A radical improvement of the lifetime of the material from 1 day for AgNPls coated with citrate to more than 900 days for calixarene-coated AgNPls, as well as the stability in acidic conditions, phosphate saline buffer (PBS) or biofluid, were observed. Benefiting from this exceptional robustness, calixarene-coated AgNPls were exploited to design dipstick assays. Rabbit immunoglobulin G (IgG) detection was developed first as proof-of-concept. The optimal system was then used for the detection of Anti-SARS-CoV-2 IgG. In both cases, a picomolar limit of detection (LOD) was achieved as well as the detection in 100% of pooled human plasma. This sensitivity competes with that of ELISA and is better than the one previously obtained with gold or even silver nanospheres for the same target and in similar conditions. Finally, the wide range of colors provided by the AgNPls allowed the design of a multicolor multiplex assay for the simultaneous detection of multiple analytes.

摘要

贵金属各向异性纳米结构,如银纳米盘(AgNPls),具有比其球形对应物更高的等离子体特性,因此很有趣:增加消光系数和可调谐的吸收波长最大值。然而,由于这些结构本质上不稳定,为了保持各向异性结构,需要有一层保护金属表面的涂层,因此它们在生物传感应用中的使用受到限制。在这项工作中,我们报告了一种基于杯芳烃-重氮盐的薄但坚固的涂层的能力,该涂层能够在传统使用的涂层失效的情况下保持银纳米盘的结构各向异性。我们合成了各种尺寸的 AgNPls,并将它们用两种不同的杯芳烃进行了涂层处理,这两种杯芳烃的区别在于它们的小边缘上连接的官能团。在对初始柠檬酸阴离子与杯芳烃之间的配体交换过程的效率进行了表征之后,比较了所得杯芳烃涂层的 AgNPls 的化学和胶体稳定性与柠檬酸封端的 AgNPls。与用柠檬酸涂层的 AgNPls 的 1 天寿命相比,用杯芳烃涂层的 AgNPls 的寿命大大延长,超过 900 天,而且在酸性条件、磷酸盐生理盐水缓冲液(PBS)或生物流体中也具有稳定性。得益于这种非凡的坚固性,杯芳烃涂层的 AgNPls 被用于设计测试条分析。首先开发了兔免疫球蛋白 G(IgG)检测作为概念验证。然后,使用最佳系统检测抗 SARS-CoV-2 IgG。在这两种情况下,均实现了皮摩尔级别的检测限(LOD),并且在 100%的人血浆中都可以检测到。这种灵敏度与 ELISA 的灵敏度相当,优于以前使用金甚至银纳米球在相同条件下针对同一靶标获得的灵敏度。最后,AgNPls 提供的广泛颜色范围允许设计用于同时检测多个分析物的多色多重分析。

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