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简便合成具有54.4%橙色发射的多功能碳点用于无标记检测桑色素及内源性/外源性次氯酸盐。

Facile synthesis of multifunctional carbon dots with 54.4% orange emission for label-free detection of morin and endogenous/exogenous hypochlorite.

作者信息

Meng Yating, Zhang Zhuqing, Zhao Hongxia, Jiao Yuan, Li Jun, Shuang Shaomin, Dong Chuan

机构信息

Institute of Environmental Science, and School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, China.

Integrated Center for Inspection and Testing of Changzhi City, Changzhi 046000, China.

出版信息

J Hazard Mater. 2022 Feb 15;424(Pt B):127289. doi: 10.1016/j.jhazmat.2021.127289. Epub 2021 Sep 28.

Abstract

Carbon dots with long-wavelength emission (orange to red), high quantum yield (QY) and good biocompatibility are of great significance for biomedical applications, but achieving this is still a highly challenging task. In this work, multifunctional carbon dots with 54.4% orange emission (O-CDs) were prepared through one-pot solvothermal treatment of nileblueasulphate and citric acid as precursor for label-free recognition of morin and endogenous/exogenous hypochlorite (ClO) and bioimaging in cellular and zebrafish. Morin can quench the luminescence of O-CDs by static quenching (SQ). The linear range is 5-125 μM and LOD is 0.84 μM. ClO reduce the photoluminescence intensity of O-CDs via SQ. The linear range is 2.5-90 μM and LOD was 0.46 μM. In addition, The obtained O-CDs have successfully realized the monitoring of morin and endogenous/ exogenous ClO in living cells and zebrafish owing to its superior biocompatibility, exceptional photostability and lower toxicity. This work opens up a novel opportunity for the development of long-wavelength emission multifunctional nanomaterial with high quantum yield based on CDs for biosensing, biolabeling and biomedical optical imaging.

摘要

具有长波长发射(橙色至红色)、高量子产率(QY)和良好生物相容性的碳点在生物医学应用中具有重要意义,但实现这一点仍然是一项极具挑战性的任务。在这项工作中,通过一锅溶剂热法处理硫酸尼罗蓝和柠檬酸作为前驱体,制备了橙色发射率为54.4%的多功能碳点(O-CDs),用于无标记识别桑色素和内源性/外源性次氯酸盐(ClO),并用于细胞和斑马鱼的生物成像。桑色素可通过静态猝灭(SQ)淬灭O-CDs的发光。线性范围为5-125 μM,检测限为0.84 μM。ClO通过SQ降低O-CDs的光致发光强度。线性范围为2.5-90 μM,检测限为0.46 μM。此外,所获得的O-CDs由于其优异的生物相容性、出色的光稳定性和较低的毒性,已成功实现了对活细胞和斑马鱼中桑色素和内源性/外源性ClO的监测。这项工作为基于碳点开发具有高量子产率的长波长发射多功能纳米材料用于生物传感、生物标记和生物医学光学成像开辟了新的机遇。

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