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Versatile Synthesis Strategy for Carboxylic Acid-functionalized Upconverting Nanophosphors as Biological Labels

机译:羧酸功能化上转换纳米磷作为生物标签的多功能合成策略

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Up-converting rare-earth nanophosphors (UCNPs) have great potential to revolutionize biological luminescent labels, but their use has been limited by difficulties in obtaining UCNPs that are biocompatible. To address this problem, we have developed a simple and versatile strategy for converting hydrophobic UCNPs into water-soluble and carboxylic acid-functionalized analogues by directly oxidizing oleic acid ligands with the Lemieux-von Rudloff reagent. This oxidation process has no obvious adverse effects on the morphologies, phases, compositions and luminescent capabilities of UCNPs. Furthermore, as revealed by Fourier transform infrared (FTIR) and NMR results, oleic acid ligands on the surface of UCNPs can be oxidized into azelaic acids (HOOC(CH_2)_7COOH), which results in the generation of free carboxylic acid groups on the surface. The presence of free carboxylic acid groups not only confers high solubility in water, but also allows further conjugation with biomolecules such as streptavidin. A highly sensitive DNA sensor based on such streptavidin-coupled UCNPs have been prepared, and the demonstrated results suggest that these biocompatible UCNPs have great superiority as luminescent labeling materials for biological applications.
机译:上转换稀土纳米荧光粉(UCNPs)具有极大的潜力来革新生物发光标记,但是由于难以获得具有生物相容性的UCNPs,其使用受到了限制。为了解决这个问题,我们开发了一种简单而通用的策略,通过使用Lemieux-von Rudloff试剂直接氧化油酸配体,将疏水性UCNPs转化为水溶性和羧酸官能化的类似物。该氧化过程对UCNP的形态,相,组成和发光能力没有明显的不利影响。此外,如傅立叶变换红外(FTIR)和NMR结果所揭示,UCNPs表面的油酸配体可被氧化成壬二酸(HOOC(CH_2)_7COOH),从而在表面上生成游离羧酸基团。游离羧酸基团的存在不仅赋予其在水中的高溶解度,而且还允许与生物分子如链霉亲和素进一步缀合。已经制备了基于这种抗生蛋白链菌素偶联的UCNP的高度灵敏的DNA传感器,并且已证明的结果表明这些生物相容性UCNP作为用于生物应用的发光标记材料具有极大的优越性。

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