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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Room temperature preparation of fluorescent starch nanoparticles from starch-dopamine conjugates and their biological applications
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Room temperature preparation of fluorescent starch nanoparticles from starch-dopamine conjugates and their biological applications

机译:来自淀粉 - 多巴胺缀合物的荧光淀粉纳米粒子的室温制备及其生物应用

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AbstractFluorescent organic nanoparticles (FONs) have been regarded as the promising candidates for biomedical applications owing to their well adjustment of chemical structure and optical properties and good biological properties. However, the preparation of FONs from the natural derived polymers has been rarely reported thus far. In current work, we reported a novel strategy for preparation of FONs based on the self-polymerization of starch-dopamine conjugates and polyethyleneimine in rather mild experimental conditions, including air atmosphere, aqueous solution, absent catalysts and at room temperature. The morphology, chemical structure and optical properties of the resultant starch-based FONs were investigated by different characterization techniques. Biological evaluation results demonstrated that these starch-based FONs possess good biocompatibility and fluorescent imaging performance. More importantly, the novel strategy might also be extended for the preparation of many other carbohydrate polymers based FONs with different structure and functions. Therefore, this work opens a new avenue for the preparation and biomedical applications of luminescent carbohydrate polymers.Graphical abstractFluorescence organic nanoparticles with high fluorescent intensity, excellent water dispersibility and good biocompatibility were synthesized through the self-polymerization of s
机译:<![cdata [ Abstract 荧光有机纳米颗粒(FONS)被认为是由于它们调整化学结构和光学性质和良好生物学的良好调整,因此被认为是生物医学应用的有希望的候选者特性。然而,到目前为止,很少报道来自天然衍生的聚合物的FONS的制备。在目前的工作中,我们报道了一种基于淀粉 - 多巴胺缀合物的自聚聚亚胺的制备FONS的新策略,包括温和的实验条件,包括空气气氛,水溶液,不存在催化剂和室温。通过不同的表征技术研究了所得淀粉的FOCE的形态,化学结构和光学性质。生物学评估结果表明,这些淀粉的FON具有良好的生物相容性和荧光成像性能。更重要的是,还可以延长新的策略,以制备具有不同结构和功能的基于粉的许多其他碳水化合物聚合物。因此,这项工作开辟了发光碳水化合物聚合物的制备和生物医学应用的新途径。 图形摘要 具有高荧光强度的荧光有机纳米颗粒,通过S的自聚合合成优异的水分散性和良好的生物相容性

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