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乙二胺辅助利用新型生物质制备碳点用于高灵敏检测左旋多巴。

Ethylenediamine assist preparation of carbon dots with novel biomass for highly sensitive detection of levodopa.

作者信息

Huang Zongmei, Li Jing, Li Lu-Shuang

机构信息

Key Laboratory of Tropical Biological Resources of Ministry of Education, School of Pharmaceutical Sciences, Collaborative Innovation Center of One Health, Hainan University Haikou 570228 China

Xiangyang Central Hospital, Affiliated Hospital of Hubei University of Arts & Science Xiangyang 441021 China.

出版信息

RSC Adv. 2025 Jan 3;15(1):420-427. doi: 10.1039/d4ra08240k. eCollection 2025 Jan 2.

Abstract

Levodopa (l-Dopa), a precursor drug for dopamine has been widely used to treat Parkinson's disease. However, excess accumulation of l-Dopa in the body may cause movement disorders and uncontrollable emotions. Therefore, it is vital to monitor l-Dopa levels in patients. In this study, a carbon dot (CD)-based fluorescence sensing system was developed for sensitive detection of l-Dopa. The CDs were prepared using a novel biomass, Roxb., as a carbon source a simple hydrothermal method. Interestingly, it was found that ethylenediamine doping in the preparation system increased the quantum yield of CDs, as well as their fluorescence response sensitivity to l-Dopa. After optimizing the preparation and sensing conditions, the detection limit of l-Dopa decreased from 1.54 μM to 0.05 μM. A complete methodological validation was conducted and the probe was successfully applied to the determination of l-Dopa in fetal bovine serum with excellent precision (RSD ≤ 2.99%) and recoveries of 88.50-99.71%. Overall, this work provides an effective strategy for the regulation of properties of CDs derived from biomass and an innovative method for clinical l-Dopa monitoring.

摘要

左旋多巴(L-多巴),一种多巴胺的前体药物,已被广泛用于治疗帕金森病。然而,L-多巴在体内的过量积累可能会导致运动障碍和情绪失控。因此,监测患者体内的L-多巴水平至关重要。在本研究中,开发了一种基于碳点(CD)的荧光传感系统,用于灵敏检测L-多巴。这些碳点是使用一种新型生物质辣木叶,通过简单的水热法作为碳源制备而成。有趣的是,发现在制备体系中掺杂乙二胺提高了碳点的量子产率,以及它们对L-多巴的荧光响应灵敏度。优化制备和传感条件后,L-多巴的检测限从1.54 μM降至0.05 μM。进行了完整的方法学验证,该探针成功应用于胎牛血清中L-多巴的测定,具有出色的精密度(RSD≤2.99%)和88.50 - 99.71%的回收率。总体而言,这项工作为调控源自生物质的碳点性质提供了一种有效策略,并为临床L-多巴监测提供了一种创新方法。

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