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Carbon-dot-based ratiometric fluorescence glucose biosensor

机译:基于碳点的比例荧光葡萄糖生物传感器

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摘要

A ratiometric fluorescence glucose biosensor based on carbon dots (CDs) and rhodamine 6G (Rh6G) was developed both as an aqueous solution and as a crosslinked poly(acrylic acid) solid-state film. A ratiometric fluorescence color change was realized by fluorescence quenching due to the bienzymatic reaction of glucose oxidase (GOx) and horseradish peroxidase (HRP) with glucose. When excited at 360 nm, the blue fluorescence emission of the CDs, prepared by a solvothermal method with citric acid and ethylene diamine, was quenched by the bienzymatic reaction with glucose, whereas the fluorescence of Rh6G was inert to glucose. Thus, a ratiometric fluorescence color change from blue to green was observed as the glucose concentration increased. The optimized CD/Rh6G/GOx/HRP aqueous solution showed a linear range of 0.1-500 mu M with a limit of detection (LOD) of 0.04 mu M, good selectivity for glucose over the major ingredients in human blood and could be used with human blood serum. A stable solid-state biosensor film was fabricated by immobilization of CD/Rh6G/GOx/HRP in the hydrogel film prepared by ultraviolet curing of a mixture of acrylic acid and diacrylated poly(ethylene glycol) (70:30, w/w). Compared to the CD/Rh6G/GOx/HRP aqueous solution, the hydrogel film showed a similar ratiometric fluorescence color change, sensitivity (linear range of 0.5-500 mu M with an LOD of 0.08 mu M), and selectivity. Further, the solid-state glucose biosensor film was inherently stable and could be used whenever needed, overcoming the instability of the aqueous solution (owing to aggregation, enzyme denaturation, etc.). These ratiometric biosensors increase the ability to detect glucose using the naked eye compared to simple turn-on or turn-off modes. Thus, this approach expands the potential applications of CDs in biosensors to provide more convenient and practical detection methods.
机译:开发了一种基于碳点(CD)和若丹明6G(Rh6G)的比例荧光葡萄糖生物传感器,既作为水溶液,也作为交联的聚(丙烯酸)固态膜。由于葡萄糖氧化酶(GOx)和辣根过氧化物酶(HRP)与葡萄糖的双酶反应,通过荧光猝灭实现了定量荧光颜色变化。当在360 nm处激发时,通过与柠檬酸和乙二胺的溶剂热法制备的CD的蓝色荧光发射通过与葡萄糖的双酶反应淬灭,而Rh6G的荧光对葡萄糖呈惰性。因此,随着葡萄糖浓度增加,观察到荧光色从蓝色到绿色的比例变化。优化的CD / Rh6G / GOx / HRP水溶液的线性范围为0.1-500μM,检出限(LOD)为0.04μM,对人血中主要成分的葡萄糖具有良好的选择性,可与人血清。通过将CD / Rh6G / GOx / HRP固定在通过紫外线固化丙烯酸和二丙烯酸酯化聚乙二醇(70:30,w / w)的混合物制得的水凝胶薄膜中,制得了稳定的固态生物传感器薄膜。与CD / Rh6G / GOx / HRP水溶液相比,水凝胶膜显示出相似的比例荧光颜色变化,灵敏度(0.5-500μM的线性范围,LOD为0.08μM)和选择性。此外,固态葡萄糖生物传感器膜固有地稳定并且可以在需要时使用,克服了水溶液的不稳定性(由于聚集,酶变性等)。与简单的打开或关闭模式相比,这些比例式生物传感器提高了使用裸眼检测葡萄糖的能力。因此,该方法扩展了CD在生物传感器中的潜在应用,以提供更方便实用的检测方法。

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