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Surface Plasmon Enhanced Light Scattering Biosensing: Size Dependence on the Gold Nanoparticle Tag

机译:表面等离子体增强光散射生物传感:尺寸依赖于金纳米粒子标签

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Surface plasmon enhanced light scattering (SP-LS) is a powerful new sensing SPR modality that yields excellent sensitivity in sandwich immunoassay using spherical gold nanoparticle (AuNP) tags. Towards further improving the performance of SP-LS, we systematically investigated the AuNP size effect. Simulation results indicated an AuNP size-dependent scattered power, and predicted the optimized AuNPs sizes (i.e., 100 and 130 nm) that afford extremely high signal enhancement in SP-LS. The maximum scattered power from a 130 nm AuNP is about 1700-fold higher than that obtained from a 17 nm AuNP. Experimentally, a bio-conjugation protocol was developed by coating the AuNPs with mixture of low and high molecular weight PEG molecules. Optimal IgG antibody bioconjugation conditions were identified using physicochemical characterization and a model dot-blot assay. Aggregation prevented the use of the larger AuNPs in SP-LS experiments. As predicted by simulation, AuNPs with diameters of 50 and 64 nm yielded significantly higher SP-LS signal enhancement in comparison to the smaller particles. Finally, we demonstrated the feasibility of a two-step SP-LS protocol based on a gold enhancement step, aimed at enlarging 36 nm AuNPs tags. This study provides a blue-print for the further development of SP-LS biosensing and its translation in the bioanalytical field.
机译:表面等离子体增强光散射(SP-LS)是一种强大的新感测SPR模态,其使用球形金纳米粒子(AUNP)标签在夹层免疫测定中产生优异的敏感性。为了进一步提高SP-LS的性能,我们系统地研究了AUNP尺寸效应。仿真结果表明AUNP大小相关的散射功率,并预测了在SP-LS中提供极高信号增强的优化的AUNPS尺寸(即100和130nm)。来自130nm AUNP的最大散射功率约为1700倍,比从17 nm AUNP获得的高约1700倍。通过实验,通过用低和高分子量PEG分子的混合物涂覆AUNP来开发生物缀合方案。使用物理化学表征和模型点印迹测定来鉴定最佳IgG抗体生物谐波条件。聚合阻止在SP-LS实验中使用较大的AUNP。如通过模拟预测的,与较小的颗粒相比,具有50和64nm直径为50和64nm的AUNP产生显着较高的SP-LS信号增强。最后,我们证明了一种基于金增强步骤的两步SP-LS协议的可行性,旨在扩大36nm AUNPS标签。本研究提供了一种蓝色印刷,用于进一步发展SP-LS生物调强及其在生物分析领域的翻译。

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