Luo Wilson, Gobbo Pierangelo, Gunawardene Praveen N, Workentin Mark S
The University of Western Ontario and the Centre for Materials and Biomaterials Research , Richmond Street, London, Ontario N6A 5B7, Canada.
Langmuir. 2017 Feb 28;33(8):1908-1913. doi: 10.1021/acs.langmuir.6b03647. Epub 2017 Feb 14.
The ability to regulate small-molecule release from metallic nanoparticle substrates offers unprecedented opportunities for nanocarrier-based imaging, sensing, and drug-delivery applications. Herein we report a novel and highly specific release methodology off gold nanoparticle (AuNP) surfaces based on the bioorthogonal Staudinger-Bertozzi ligation. A thiol ligand bearing the molecular cargo, a Rhodamine B dye derivative, was synthesized and used to modify small water-soluble 5 nm AuNPs. Upon incorporation into the AuNP monolayer, we observed efficient quenching of the dye emission, resulting in a very low level of fluorescence emission that provided the baseline from which cargo release was monitored. We examined the ability of these AuNPs to react with azide molecules via Staudinger-Bertozzi ligation on the nanoparticle surface by monitoring the fluorescence emission after the introduction of an organic azide. We observed an immediate increase in emission intensity upon azide addition, which corresponded to the release of the dye into the bulk solution. The P NMR spectrum of the AuNP product also agrees with the formation of the ligation product. Thus this system represents a novel and highly specific release methodology off AuNP surfaces that can have potential applications in drug delivery, sensing, and materials science.
调控金属纳米颗粒基底释放小分子的能力为基于纳米载体的成像、传感及药物递送应用带来了前所未有的机遇。在此,我们报道一种基于生物正交施陶丁格-贝托齐连接反应的、从金纳米颗粒(AuNP)表面释放物质的新型且高度特异性的方法。合成了一种带有分子载荷(罗丹明B染料衍生物)的硫醇配体,并用于修饰水溶性的5纳米小金纳米颗粒。将其整合到金纳米颗粒单分子层后,我们观察到染料发射荧光被有效猝灭,导致荧光发射水平极低,此为监测载荷释放的基线。通过监测引入有机叠氮化物后的荧光发射,我们研究了这些金纳米颗粒通过纳米颗粒表面的施陶丁格-贝托齐连接反应与叠氮化物分子发生反应的能力。加入叠氮化物后,我们观察到发射强度立即增加,这对应于染料释放到本体溶液中。金纳米颗粒产物的31P NMR谱也与连接产物的形成相符。因此,该系统代表了一种从金纳米颗粒表面释放物质的新型且高度特异性的方法,在药物递送、传感及材料科学领域可能具有潜在应用。