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Fluorescent boronic acid-modified polymer nanoparticles for enantioselective monosaccharide detection

机译:荧光硼酸修饰的聚合物纳米颗粒,用于对映选择性单糖检测

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摘要

We report the fabrication of new fluorescent boronic acid-modified polyacrylonitrile (B-PAN) nanoparticles for an enantioselective monosaccharide sensor. Polyacrylonitrile (PAN) nanoparticles of 50 nm diameter were synthesized by radical polymerization. After boronic acid modification, the B-PAN nanoparticles showed enhanced fluorescence due to a photo-induced electron transfer mechanism. The B-PAN nanoparticles enabled molecular recognition in aqueous solution owing to covalent bonds with diol-containing compounds, resulting in application for enantiomer detection of monosaccharides. The fluorescence intensity changed when B-PAN nanoparticles interacted with the enantiomers of monosaccharides, including D-/L-glucose, D-/L-galactose, and D-/L-fructose. The B-PAN nanoparticles provide a new direction for the development of enantioselective monosaccharide sensors and could be subsequently expanded to a platform of versatile fluorescence sensors.
机译:我们报告为对映选择性单糖传感器的新型荧光硼酸改性聚丙烯腈(B-PAN)纳米粒子的制造。通过自由基聚合合成了直径为50 nm的聚丙烯腈(PAN)纳米颗粒。硼酸改性后,由于光诱导的电子转移机制,B-PAN纳米粒子显示出增强的荧光。由于B-PAN纳米颗粒与含二醇的化合物共价键结合,因此能够在水溶液中进行分子识别,从而可用于单糖的对映异构体检测。当B-PAN纳米粒子与单糖的对映异构体(包括D- / L-葡萄糖,D- / L-半乳糖和D- / L-果糖)相互作用时,荧光强度发生变化。 B-PAN纳米粒子为对映选择性单糖传感器的开发提供了新的方向,并且可以随后扩展到多功能荧光传感器的平台。

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