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利用从狗牙根中合成的荧光碳量子点进行双金属离子(Fe 和 As)传感和细胞生物成像。

Dual metal ion (Fe and As) sensing and cell bioimaging using fluorescent carbon quantum dots synthesised from Cynodon dactylon.

机构信息

Department of Physics, School of Physical Sciences, Sikkim University, Gangtok, 737102, India.

Centre for Genetic Disorders, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.

出版信息

Chemosphere. 2023 Oct;339:139638. doi: 10.1016/j.chemosphere.2023.139638. Epub 2023 Jul 29.

Abstract

In this study, water dispersible fluorescent carbon quantum dot (CQD) has been synthesised, having an average size of 8.6 ± 0.4 nm using Cynodon dactylon (CD) following microwave assisted green synthetic one-step method. As-prepared CQD fluoresces strongly at 444 nm having a quantum yield of 1% in water when excited at 350 nm. This fluorescence of CQD is sensitive toward As and Fe metal ions. These CQD are utilized for dual metal ion fluorescence sensing; turn-on fluorescence sensing for As and turn-off fluorescence sensing for Fe ions. Limit of detection for As and Fe ions has been found to be 19 nM and 0.10 μM respectively, which is the lowest value reported for As without any functionalization. The adsorption kinetics of As and Fe ions on CQD have been examined using pseudo-first-order-kinetic model revealing that physical adsorption is dominant over chemical processes in this work. For 0.41 g/L and 1.90 g/L dose of CQD, the equilibrium adsorption capacity was found to be 1.57 × 10 mg/g, 2.91 × 10 mg/g, and 1.01 × 10 mg/g, 1.69 × 10 mg/g respectively for As and Fe ions. Despite having low quantum yield in water, as-prepared CQD showed low cytotoxicity and good tolerance against photodegradation of biological cells at concentrations lower than 62.5 μg/mL and when the cells are illuminated up to 12 h. Owing to this, the synthesised CQD have been utilized as fluorescent probes for in itro cell imaging.

摘要

在这项研究中,我们使用狗尾草(CD)通过微波辅助绿色合成一步法合成了水可分散的荧光碳量子点(CQD),平均粒径为 8.6±0.4nm。所制备的 CQD 在 350nm 激发下于 444nm 强烈荧光,量子产率为 1%,在水中。CQD 的这种荧光对 As 和 Fe 金属离子敏感。这些 CQD 用于双重金属离子荧光传感;对 As 进行开荧光传感,对 Fe 离子进行关荧光传感。发现 As 和 Fe 离子的检测限分别为 19 nM 和 0.10 μM,这是未经任何功能化的 As 的最低值。使用拟一级动力学模型研究了 As 和 Fe 离子在 CQD 上的吸附动力学,结果表明,在这项工作中,物理吸附占主导地位,而不是化学过程。对于 0.41g/L 和 1.90g/L 的 CQD 剂量,对 As 和 Fe 离子的平衡吸附容量分别为 1.57×10mg/g、2.91×10mg/g、1.01×10mg/g 和 1.69×10mg/g。尽管在水中的量子产率较低,但所制备的 CQD 在浓度低于 62.5μg/mL 且细胞光照长达 12h 时,表现出低细胞毒性和对生物细胞光降解的良好耐受性。因此,合成的 CQD 已被用作体外细胞成像的荧光探针。

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