Green Catalysis Center and College of Chemistry, Zhengzhou University, Zhengzhou, China.
Beijing Key Laboratory of Clothing Materials R &D and Assessment, Beijing Engineering Research Center of Textile, Nanofiber, Beijing Institute of Fashion Technology, Beijing, China.
Luminescence. 2020 Dec;35(8):1319-1327. doi: 10.1002/bio.3894. Epub 2020 Jun 22.
Metal ions and anions play significant roles in biological systems and industrial processes, therefore it is important to develop good fluorescent probes to detect metal ions and anions. Here, N,O-co-doped carbon quantum dots (CDs) that could detect Zn via a ratiometric fluorescence method were fabricated. The reaction between the as-prepared CDs and zinc acetate gave the composite CDs-Zn, in which fluorescence changed ratiometrically upon addition of S O . With change in excitation light, the emission peaks of the CDs and CDs-Zn were kept fixed while intensity changed. CDs and CDs-Zn exhibited good photostability, thermal stability, selectivity, and strong anti-interference ability. In addition, CDs and CDs-Zn displayed low dark toxicity under physiological temperatures. Ratiometric fluorescence imaging of intracellular Zn and S O was carried out in living HeLa cells for both of these probes. Compared with reported ratiometric fluorescent hybrid nanosensors based on organic dyes and inorganic nanomaterials, the as-prepared CDs and CDs-Zn had low toxicity, and were easy to synthesize.
金属离子和阴离子在生物系统和工业过程中起着重要作用,因此开发良好的荧光探针来检测金属离子和阴离子非常重要。在这里,我们制备了可以通过比率荧光法检测 Zn 的 N,O-共掺杂碳量子点(CDs)。所制备的 CDs 与乙酸锌反应生成复合 CDs-Zn,其中 S O 的加入会使荧光发生比率变化。随着激发光的变化,CDs 和 CDs-Zn 的发射峰保持固定,而强度发生变化。CDs 和 CDs-Zn 表现出良好的光稳定性、热稳定性、选择性和较强的抗干扰能力。此外,CDs 和 CDs-Zn 在生理温度下表现出低暗毒性。这两种探针都在活 HeLa 细胞中进行了细胞内 Zn 和 S O 的比率荧光成像。与基于有机染料和无机纳米材料的报道的比率荧光杂交纳米传感器相比,所制备的 CDs 和 CDs-Zn 具有低毒性,且易于合成。