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A Strategy for Prompt Phase Transfer of Upconverting Nanoparticles Through Surface Oleate-Mediated Supramolecular Assembly of Amino-β-Cyclodextrin

机译:通过表面油酸介导的氨基β-环糊精的超分子组装促进上转换纳米粒子相变的策略

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摘要

Lanthanide-doped upconverting nanoparticles (UCNPs) are promising for applications as wide as biosensing, bioimaging, controlled drug release, and cancer therapy. These applications require surface engineering of as-prepared nanocrystals, commonly coated with hydrophobic ligand of oleic acid, to enable an aqueous dispersion. However, literature-reported approaches often require a long time and/or multiple step treatment, along with several fold upconversion luminescence (UCL) intensity decrease. Here, we describe a strategy allowing oleate-capped UCNPs to become water-soluble and open-modified, with almost undiminished UCL, through ultrasonication of minutes. The prompt phase transfer was enabled by oleate-mediated supramolecular self-assembly of amino modified β-cyclodextrin (amino-β-CD) onto UCNPs surface. We showed that this method is valid for a wide range of UCNPs with quite different sizes (6–400 nm), various dopant types (Er, Tm, and Ho), and hierarchical structures (core, core-shell). Importantly, the amino group of amino-β-CD on the surface of treated UCNPs provide possibilities to introduce entities for biotargeting or functionalization, as exemplified here, a carboxylic-containing near infrared dye (Cy 7.5) that sensitizes UCNPs to enhance their UCL by ~4,820 fold when excited at ~808 nm. The described method has implications for all types of oleate-capped inorganic nanocrystals, facilitating their myriad bioapplications.
机译:掺杂镧系元素的上转换纳米粒子(UCNP)在生物传感,生物成像,受控药物释放和癌症治疗等领域具有广阔的应用前景。这些应用需要对所制备的纳米晶体进行表面工程处理,使其通常涂覆有油酸的疏水配体,以实现水分散体。但是,文献报道的方法通常需要长时间和/或多步处理,以及上转换发光(UCL)强度降低几倍。在这里,我们描述了一种策略,通过几分钟的超声处理,可使油酸酯封端的UCNPs变为水溶性且开放修饰,而UCL几乎保持不变。通过油基介导的氨基修饰的β-环糊精(氨基-β-CD)在UCNPs表面的超分子自组装,可以实现快速的相转移。我们表明,该方法适用于各种尺寸(6-400 nm),各种掺杂剂类型(Er,Tm和Ho)和分层结构(核,核-壳)的UCNP。重要的是,经过处理的UCNPs表面的氨基β-CD氨基为引入生物靶向或功能化实体提供了可能性,如此处所示,是一种含羧基的近红外染料(Cy 7.5),它可使UCNPs增敏,从而通过在〜808 nm激发时〜4,820倍。所描述的方法对所有类型的油酸酯封端的无机纳米晶体都有影响,从而促进了其多种生物应用。

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