Quality control and purification of ready-to-use conjugated gold nanoparticles to ensure effectiveness in biosensing

Junjie Wang, S. Giordani, Valentina Marassi, B. Roda, P. Reschiglian, A. Zattoni
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引用次数: 2

Abstract

Introduction: Gold nanoparticles (AuNPs) and their conjugates are used for many applications in the field of sensors. Literature lacks procedures able to separate, purify and characterize these species in native conditions without altering them while assuring a high throughput. This technological gap can be reduced by exploiting Asymmetrical Flow Field Flow Fractionation multidetection platforms (AF4 multidetection). Method: This work describes a complete set of strategies based on the AF4 system, from nanoparticle synthesis to separative method optimization to conjugates screening and characterization, achieving quantitative control and purification of ready-to-use conjugated Gold nanoparticles and ensuring effectiveness in biosensing. Results and Discussion: AF4-multidetection was used to study AuNPs with different types of surface coating [Poly ethylene glycol, (PEG) and Citrate], their binding behaviour with protein (Bovine serum albumin, BSA) and their stability after conjugation to BSA. A robust but flexible method was developed, able to be applied to different AuNPs and conjugating molecules. The morphology and conjugation mechanism of AuNPs-BSA conjugates were evaluated by combining online Multiangle light scattering (MALS) and offline Dynamic Light Scattering (DLS) measures, which provided an important feature for the quality control required to optimize bio-probe synthesis and subsequent bioassays.
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现成的共轭金纳米颗粒的质量控制和纯化,以确保生物传感的有效性
简介:金纳米粒子及其偶联物在传感器领域有许多应用。文献中缺乏能够在天然条件下分离、纯化和表征这些物种而不改变它们同时确保高通量的程序。这种技术差距可以通过利用非对称流场流量分馏多检测平台(AF4多检测)来缩小。方法:本工作描述了一套基于AF4系统的完整策略,从纳米颗粒的合成到分离方法的优化,再到偶联物的筛选和表征,实现了对现成的偶联金纳米颗粒的定量控制和纯化,并确保了生物传感的有效性。结果与讨论:AF4多重检测用于研究具有不同类型表面涂层[聚乙二醇(PEG)和柠檬酸盐]的AuNPs,它们与蛋白质(牛血清白蛋白,BSA)的结合行为以及它们与BSA结合后的稳定性。开发了一种稳健但灵活的方法,能够应用于不同的AuNP和偶联分子。通过结合在线多角度光散射(MALS)和离线动态光散射(DLS)测量,评估了AuNPs-BSA偶联物的形态和偶联机制,这为优化生物探针合成和随后的生物测定所需的质量控制提供了重要特征。
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