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具有抗氧化能力的碳点用于荧光检测葡萄糖及修复高糖损伤的神经胶质细胞

Carbon Dots with Antioxidant Capacity for Detecting Glucose by Fluorescence and Repairing High-Glucose Damaged Glial Cells.

作者信息

Zhao Wenlong, Zhang Menghan, Zhang Liang, Deng Xiaoqin, Wang Yao, Chen Yiping, Weng Shaohuang

机构信息

Department of Neurology, Institute of Neurology, The First Affiliated Hospital of Fujian Medical University, Fuzhou, 350005, China.

Department of Pharmaceutical Analysis, School of Pharmacy, Fujian Medical University, Fuzhou, 350122, China.

出版信息

J Fluoresc. 2025 Feb;35(2):1151-1162. doi: 10.1007/s10895-024-03599-8. Epub 2024 Feb 1.

Abstract

Diabetic mellitus management extends beyond blood glucose monitoring to the essential task of mitigating the overexpression of reactive oxygen species (ROS), particularly vital for cellular repair, especially within the nervous system. Herein, antioxidant carbon dots (Arg-CDs) were designed and prepared using anhydrous citric acid, L-arginine, and ethylenediamine as sources through a hydrothermal method. Arg-CDs exhibited excellent scavenging ability to 2,2-Diphenyl-1-picrylhydrazyl (DPPH∙), and fluorescence response to hydroxyl radicals (∙OH), a characteristic representative of reactive oxygen species (ROS). Assisted by glucose oxidase and Fe, Arg-CDs showed a sensitive and selective response to glucose. The quenching mechanism of Arg-CDs by formed ∙OH was based on the static quenching effect (SQE). The analytical performance of this method for glucose detection encompassed a wide linear range (0.3-15 μM), a low practical limit of detection (0.1 μM) and practical applicability for blood glucose monitoring. In an in vitro model employing glial cells (BV2 cells), it was observed that high glucose medium led to notable cellular damage ascribed to the excessive ROS production from hyperglycemia. The diminished and apoptotic glial cells were gradually recovered by adding increased contents of Arg-CDs. This work illustrates a promising area that designs effective carbon dots with antioxidant capacity for the dual applications of detection and cell repairing based on the utilization of antioxidant activity.

摘要

糖尿病管理不仅限于血糖监测,还包括减轻活性氧(ROS)过度表达这一重要任务,这对细胞修复至关重要,尤其是在神经系统中。在此,以无水柠檬酸、L-精氨酸和乙二胺为原料,通过水热法设计并制备了抗氧化碳点(Arg-CDs)。Arg-CDs对2,2-二苯基-1-苦基肼自由基(DPPH∙)表现出优异的清除能力,对活性氧(ROS)的特征代表性物质羟基自由基(∙OH)有荧光响应。在葡萄糖氧化酶和铁的辅助下,Arg-CDs对葡萄糖表现出灵敏且选择性的响应。形成的∙OH对Arg-CDs的猝灭机制基于静态猝灭效应(SQE)。该方法用于葡萄糖检测的分析性能包括宽线性范围(0.3 - 15 μM)、低实际检测限(0.1 μM)以及对血糖监测的实际适用性。在一个使用胶质细胞(BV2细胞)的体外模型中,观察到高糖培养基导致明显的细胞损伤,这归因于高血糖产生的过量ROS。通过添加增加含量的Arg-CDs,减少和凋亡的胶质细胞逐渐恢复。这项工作展示了一个有前景的领域,即基于抗氧化活性的利用,设计具有抗氧化能力的有效碳点用于检测和细胞修复的双重应用。

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