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微波辅助固相合成具有良好溶剂相容性的氮掺杂碳点及其对舒尼替尼的传感性能。

Microwave-assisted solid-phase synthesis of nitrogen-doping carbon dot with good solvent compatibility and its sensing of sunitinib.

机构信息

Tongji School of Pharmacy, Huazhong University of Science and Technology, Wuhan, 430030, Hubei, China.

Department of Pharmacy, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, Hubei, China.

出版信息

Anal Bioanal Chem. 2021 Oct;413(25):6435-6447. doi: 10.1007/s00216-021-03609-9. Epub 2021 Aug 17.

Abstract

Microwave-assisted solid-phase synthesis method was simple, convenient, and fast, and herein adopted to produce nitrogen-doping carbon dots (N-CDs) in only 3 min. The N-CDs possessed high fluorescence quantum yield up to 15.9% with satisfactory stability to the environmental pH, ionic strength, and ultraviolet radiation. Particularly, the N-CDs had excellent dispersibility in both water and water-compatible organic solvents with similar fluorescence properties. Sunitinib, a small-molecule tyrosine inhibitor effective for some solid tumors, was found to quench the fluorescence of N-CDs in these media via the inner-filter effect. Hence, it was convenient to combine the proper sample pretreatment with the N-CD probe for sensing sunitinib avoiding the medium incompatibility problem. For rat plasma sample, salting-out liquid-liquid extraction was employed to minimize the sample matrix and concentrate the target sunitinib from aqueous to acetonitrile. The fluorescence detection of sunitinib was then achieved in acetonitrile by the addition of the proper amount of N-CDs. The method provided a good linearity of 0.1 μg/mL to 7 μg/mL with a limit of detection of 30 ng/mL, which met the requirement of the therapeutic drug monitoring of sunitinib. The developed method was potential for on-site detection of sunitinib.

摘要

微波辅助固相合成方法简单、方便、快速,在此采用该方法仅 3 分钟即可制备氮掺杂碳点(N-CDs)。N-CDs 的荧光量子产率高达 15.9%,具有令人满意的环境 pH 值、离子强度和紫外线辐射稳定性。特别是,N-CDs 在水和水混溶性有机溶剂中具有良好的分散性,且具有相似的荧光性质。发现小分子酪氨酸抑制剂舒尼替尼可通过内滤效应猝灭这些介质中 N-CDs 的荧光。因此,通过适当的样品预处理与 N-CD 探针结合来检测舒尼替尼,可避免介质不兼容的问题。对于大鼠血浆样品,采用盐析液-液萃取法可减少样品基质,并将目标舒尼替尼从水相浓缩到乙腈中。然后通过加入适量的 N-CDs,可在乙腈中实现舒尼替尼的荧光检测。该方法在 0.1μg/mL 至 7μg/mL 范围内呈现良好的线性关系,检测限为 30ng/mL,满足舒尼替尼治疗药物监测的要求。所开发的方法具有现场检测舒尼替尼的潜力。

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