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Simultaneous Detection of Adenosine Triphosphate and Glucose Based on the Cu-Fenton Reaction

机译:铜-芬顿反应同时检测三磷酸腺苷和葡萄糖

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摘要

Both adenosine triphosphate (ATP) and glucose are important to human health, and their abnormal levels are closely related to angiocardiopathy and hypoglycaemia. Therefore, the simultaneous determination of ATP and glucose with a single test mode is highly desirable for disease diagnostics and early recognition. Herein, a new fluorescence on/off switch sensing platform is developed by carbon nanodots (CNDs) to detect ATP and glucose simultaneously. The fluorescence of CNDs can be quenched by Cu2+ and hydrogen peroxide (H2O2), due to the formation of hydroxyl radicals (·OH) produced in the Cu-Fenton reaction. Based on the high affinity of Cu2+ with ATP, the fluorescence of CNDs will recover effectively after adding ATP. Additionally, glucose can be efficiently catalyzed by glucose oxidase (GOx) to generate H2O2, so the platform can also be utilized to analyze glucose. Under optimum conditions, this sensing platform displays excellent sensitivity and the linear ranges are from 0.1 to 7 μM for ATP with a limit of detection (LOD) of 30.2 nM, and from 0.1 to 7 mM for glucose with a LOD 39.8 μM, respectively. Benefiting from the high sensitivity and selectivity, this sensing platform is successfully applied for simultaneous detection of ATP and glucose in human serum samples with satisfactory recoveries.
机译:三磷酸腺苷(ATP)和葡萄糖均对人体健康至关重要,其异常水平与血管性心脏病和低血糖症密切相关。因此,对于疾病诊断和早期识别,非常需要通过单一测试模式同时测定ATP和葡萄糖。在此,通过碳纳米点(CND)开发了一种新的荧光开/关开关传感平台,以同时检测ATP和葡萄糖。由于在Cu-Fenton反应中生成了羟基自由基(·OH),因此CND的荧光可以被Cu 2 + 和过氧化氢(H2O2)淬灭。由于Cu 2 + 与ATP的高亲和力,添加ATP后CND的荧光将有效恢复。此外,葡萄糖可以被葡萄糖氧化酶(GOx)有效催化生成H2O2,因此该平台也可以用于分析葡萄糖。在最佳条件下,该传感平台显示出出色的灵敏度,对于ATP的线性范围分别为0.1至7μM,检测限(LOD)为30.2 nM,对于葡萄糖的线性范围分别为0.1至7 mM,对于LOD 39.8μM。得益于高灵敏度和高选择性,该传感平台已成功应用于人血清样品中ATP和葡萄糖的同时检测,回收率令人满意。

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