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将功能化石墨烯量子点包埋在金属有机骨架中作为比率型荧光纳米探针用于强力霉素传感。

Encapsulating functionalized graphene quantum dot into metal-organic framework as a ratiometric fluorescent nanoprobe for doxycycline sensing.

机构信息

Key Laboratory of Drug Quality Control and Pharmacovigilance (Ministry of Education), China Pharmaceutical University, Nanjing, 210009, People's Republic of China.

State Key Laboratory of Natural Medicines, China Pharmaceutical University, No.24 Tongjiaxiang, Nanjing, Jiangsu, 210009, People's Republic of China.

出版信息

Mikrochim Acta. 2023 May 22;190(6):234. doi: 10.1007/s00604-023-05815-x.

Abstract

A distinctive fluorescent nanoprobe with the function of doxycycline identification was designed by encapsulating histidine and serine-functionalized graphene quantum dots (His-GQDs-Ser) into the luminescent metal-organic frameworks (MOF). The synthesized nanoprobe displayed the merits of prominent selectivity, wide detection range, and high sensitivity. The interaction of doxycycline and the fabricated fluorescent nanoprobe contributed to the phenomenon of the suppression of the fluorescence of the His-GQDs-Ser and enhancement of the MOF fluorescence. Linear relation between the concentration of doxycycline and the ratio fluorescence intensity of the nanoprobe was observed, which evidenced the brilliant capability in the ranges 0.003-6.25 μM and 6.25-25 μM with a detection limit of 1.8 nM. Additionally, the practicability of the probe was verified in analysis of spiked milk sample, and the satisfactory recoveries of doxycycline varied from 97.39 to 103.61%, with relative standard deviations in the range 0.62-1.42%. A proportional fluorescence sensor for doxycycline detection in standard solution was constructed, which provides a potential for the development of other fluorescence detection systems.

摘要

设计了一种具有强力四环素识别功能的独特荧光纳米探针,该探针是通过将组氨酸和丝氨酸功能化的石墨烯量子点(His-GQDs-Ser)封装进发光的金属有机骨架(MOF)中得到的。所合成的纳米探针具有明显的选择性、宽检测范围和高灵敏度的优点。四环素与所制备的荧光纳米探针的相互作用导致了 His-GQDs-Ser 的荧光抑制和 MOF 荧光增强的现象。观察到四环素浓度与纳米探针的荧光强度比之间存在线性关系,这表明在 0.003-6.25 μM 和 6.25-25 μM 的范围内具有出色的检测能力,检测限为 1.8 nM。此外,探针在加标奶样分析中的实用性得到了验证,四环素的回收率在 97.39%至 103.61%之间,相对标准偏差在 0.62-1.42%范围内。构建了用于四环素检测的比例荧光传感器,为其他荧光检测系统的发展提供了可能性。

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