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A Centrifugation-based Method for Preparation of Gold Nanoparticles and its Application in Biodetection

机译:基于离心的金纳米粒子制备方法及其在生物检测中的应用

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摘要

Gold nanoparticles (AuNPs) have found widespread applications in life sciences. While synthesis of monodispersed AuNPs has been fairly convenient by using chemical reduction of chloroauric acid by sodium citrate, we found that AuNPs of high quality and high concentrations were not readily obtained via this method. As an example, we showed that monodispersed 13-nm AuNPs were readily synthesized at relatively low concentrations (e.g. 3.5 nM); in contrast, 13-nm AuNPs of 17 nM obtained by the direct reduction method were irregularly shaped and not well dispersed. In this work, we demonstrated that AuNPs of high concentration could be prepared by a two-step approach, i.e. chemical reduction at low concentrations and subsequent centrifugation. Compared to the direct reduction method, this new two-step method led to AuNPs with high salt resistance and high stability, which are essential for the preparation of DNA-AuNPs conjugates for DNA biodetection.
机译:金纳米颗粒(AuNP)已在生命科学中得到广泛应用。虽然通过柠檬酸钠化学还原氯金酸已经很方便地合成了单分散的AuNPs,但我们发现通过这种方法不易获得高质量和高浓度的AuNPs。例如,我们表明单分散的13 nm AuNPs可以很容易地以相对较低的浓度(例如3.5 nM)合成;相比之下,通过直接还原法获得的17 nm的13 nm AuNP形状不规则且分散不充分。在这项工作中,我们证明了可以通过两步法制备高浓度的AuNPs,即在低浓度下进行化学还原并随后进行离心。与直接还原法相比,这种新的两步法产生了具有高耐盐性和高稳定性的AuNP,这对于制备用于DNA生物检测的DNA-AuNPs共轭物至关重要。

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