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叶绿素衍生的多色荧光碳化聚合物点的简便绿色合成及其用于血红素的灵敏检测

Facile and green synthesis of chlorophyll-derived multi-color fluorescent carbonized polymer dots and their use for sensitive detection of hemin.

作者信息

Liu Tianjiao, Dong Deming, Meng Yingyi, Chen Haijun, Liu Chunyue, Qi Zihan, Li Anfeng, Ning Yang

机构信息

Key Lab of Groundwater Resources and Environment Ministry of Education, College of New Energy and Environment, Jilin University, 2699 Qianjin Avenue, Changchun 130012, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Apr 5;310:123841. doi: 10.1016/j.saa.2024.123841. Epub 2024 Jan 14.

Abstract

Due to the very important role in physiological process, a simple and sensitive hemin detection method is necessarily required. Biomass-based carbonized polymer dots (CPDs) have been widely studied especially as fluorescence probe owing to the advantages of low toxicity and the variety of fluorescence color, yet there are still challenges in developing their multi-color emission property from the same raw materials. In this work, red, white and blue emissive CPDs derived from chlorophyll have been synthesized via hydrothermal method. Then white-emitted CPDs (white-CPDs) with the Commission International d'Eclairage (CIE) coordinates at (0.34, 0.32) were used to develop a fluorescence quenched sensing system for hemin determination. There is a good linear relationship between (F-F)/F and concentration of hemin in the range of 0.1-0.95 μM with a detection limit of 0.043 μM, and the quenching mechanism was considered to be caused by inner filter effect (IFE). Moreover, it has been successfully used for hemin detection in serum and also for visual determination, which indicating great potential in applications of disease diagnoses and trace identification.

摘要

由于在生理过程中具有非常重要的作用,因此需要一种简单且灵敏的血红素检测方法。基于生物质的碳化聚合物点(CPDs)因其低毒性和荧光颜色多样等优点而被广泛研究,尤其是作为荧光探针,但从相同原料开发其多色发射特性仍存在挑战。在这项工作中,通过水热法合成了源自叶绿素的红色、白色和蓝色发光CPDs。然后,使用国际照明委员会(CIE)坐标为(0.34, 0.32)的白色发光CPDs(白色-CPDs)开发了一种用于血红素测定的荧光猝灭传感系统。在0.1-0.95 μM范围内,(F-F)/F与血红素浓度之间存在良好的线性关系,检测限为0.043 μM,猝灭机制被认为是由内滤效应(IFE)引起的。此外,它已成功用于血清中血红素的检测以及目视测定,这表明在疾病诊断和痕量鉴定应用中具有巨大潜力。

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