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利用具有高荧光的 N,S-CDs 传感探针通过开环机制实现对肝素的快速、环境友好、无标记检测。

Rapid environmentally benign label free detection of heparin using highly fluorescent N,S-CDs sensing probe through a turn-on mechanism.

机构信息

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Tanta University, 31111, Egypt.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Feb 5;306:123609. doi: 10.1016/j.saa.2023.123609. Epub 2023 Nov 3.

Abstract

Heparin (HEP) is one of the oldest anticoagulant drugs that currently still in widespread clinical use. It lacks chromophore and not easily derivatized due to its hydrophilic nature. In this work we developed a green, selective, and sensitive fluorescence sensor for detection of HEP in its injection dosage forms. The sensor is composed of nitrogen and sulfur co-doped carbon quantum dots (N,S-CDs) semi quenched by Fe. The N,S-CDs were prepared using microwave assisted pyrolysis in 3.5 min and exhibited high emission at 425 nm after excitation at 350 nm with high quantum yield of 96%. Owing to the anionic nature of HEP, it could compete with N,S-CDs for Fe complexation resulting in turning-on the quenched fluorescence. This fluorescence enhancement was linear over a concentration range between 6 and 20 μg/mL (R = 0.99) with a limit of detection of 1.41 µg/ml. The accuracy and precision of the proposed sensor were indicated by percentage recovery values between 98% -102% and %RSD less than 2, respectively. Furthermore, the proposed sensor was successfully applied for determination of HEP in injection dosage form. The developed sensor showed excellent greenness on analytical eco-scale (score 93%) and GAPI scale.

摘要

肝素(HEP)是目前仍广泛临床使用的最古老的抗凝药物之一。由于其亲水性,它缺乏生色团且不易衍生化。在这项工作中,我们开发了一种用于检测其注射剂型的 HEP 的绿色、选择性和灵敏的荧光传感器。该传感器由氮和硫共掺杂的碳量子点(N,S-CDs)半猝灭的铁组成。N,S-CDs 通过微波辅助热解在 3.5 分钟内制备,并在激发波长为 350nm 时在 425nm 处表现出高发射,量子产率高达 96%。由于 HEP 的阴离子性质,它可以与 N,S-CDs 竞争与 Fe 的络合,从而使猝灭的荧光打开。这种荧光增强在 6 至 20μg/mL 之间呈线性关系(R=0.99),检测限为 1.41μg/ml。所提出的传感器的准确性和精密度通过 98%-102%的回收率值和分别小于 2%的%RSD 来表示。此外,该传感器成功应用于注射剂型中 HEP 的测定。所开发的传感器在分析生态规模(得分 93%)和 GAPI 规模上表现出出色的绿色性。

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