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绿色碳点的荧光强度增强:合成、表征与细胞成像。

Fluorescence Intensity Enhancement of Green Carbon Dots: Synthesis, Characterization and Cell Imaging.

机构信息

Department of Biochemistry and Clinical Laboratories, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.

Hematology and Oncology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Photochem Photobiol. 2020 Sep;96(5):1032-1040. doi: 10.1111/php.13261. Epub 2020 May 12.

Abstract

The hydrothermal treatment of green carbon dots (CDs) is an appropriate fluorescent probe synthesis method. CDs are exploited as biological staining agents, especially for cellular detection and imaging. The nitrogen-doped green carbon dots (N-CDs) formation can improve the fluorescence intensity property in a one-step process. Here, we report two N-CDs from lemon and tomato extraction in the presence of hydroxylamine. Lemon and tomato N-CDs showed the blue fluorescence under ultraviolet radiation of about 360 nm. The characterization of CDs and N-CDs showed the presence of N-H and C-N bonds which enhanced the fluorescence efficiency. The mean size of lemon and tomato N-CDs were about 2 and 3 nm with an increased quantum yield (QY) of 5% and 3.38%, respectively. The CDs and N-CDs cytotoxicity assay exhibited high cell viability approximately 85% and 73%, respectively. N-CDs show superior fluorescent intensity in different solvents and significant stability under long-time UV irradiation, different PH and high ionic strength. Our results indicated that the use of N-CDs in cell imaging can lead to fluorescence intensity enhancement as well as proper biocompatibility. Therefore, the safe and high fluorescence intensity of green N-CDs can be utilized for fluorescent probes in biolabeling and bioimaging applications.

摘要

水热法处理绿色碳点(CDs)是一种合适的荧光探针合成方法。CDs 被用作生物染色剂,特别是用于细胞检测和成像。氮掺杂绿色碳点(N-CDs)的形成可以在一步过程中提高荧光强度特性。在这里,我们报告了在羟胺存在下从柠檬和番茄中提取的两种 N-CDs。柠檬和番茄 N-CDs 在约 360nm 的紫外辐射下显示出蓝色荧光。CDs 和 N-CDs 的表征表明存在 N-H 和 C-N 键,这增强了荧光效率。柠檬和番茄 N-CDs 的平均尺寸分别约为 2nm 和 3nm,量子产率分别提高了 5%和 3.38%。CDs 和 N-CDs 的细胞毒性试验显示出约 85%和 73%的高细胞活力。N-CDs 在不同溶剂中表现出优异的荧光强度,在长时间的紫外辐射、不同的 pH 值和高离子强度下具有良好的稳定性。我们的结果表明,在细胞成像中使用 N-CDs 可以增强荧光强度并具有适当的生物相容性。因此,绿色 N-CDs 的安全性和高荧光强度可用于生物标记和生物成像应用中的荧光探针。

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