Zhang Xiang, Gu Yu, Zhang Yun, Yu Guo-Yin, Liao Zhi-Peng, Wu Hui-Fang, Shi Chuan-Guo
Nantong Ecological Environment Monitoring Center, Nantong, 226007, PR China.
Jiangsu Hydrometry and Water Resources Reconnaissance Bureau Nantong Branch Officer, Nantong, 2260006, PR China.
Heliyon. 2022 May 13;8(5):e09411. doi: 10.1016/j.heliyon.2022.e09411. eCollection 2022 May.
Intracellular pH (pHi) is very essential for the function of cells and organisms. Thus, it is of great scientific and technical significance to develop nanosensors for probing pHi. In this work, nitrogen-doped graphene oxide quantum dots (N-GOQDs) with fluorescent efficiency of 54% are prepared. The fluorescent spectrum excited at 340 nm contains two remarkable bands at 430 and 520 nm. Interestingly, when pH value increases from 3.6 to 10.5, the blue band at 430 nm slightly changes, while the green band at 520 nm significantly quenches. The change of fluorescent intensities also can be reflected by the variation of fluorescent color. The dual-emissive N-GOQDs are developed as ratiometric fluorescent probes for pHi, which can avoid the influence of several deviations, such as probe concentration, optical path length, and detector efficiency. As a proof of concept, pHi of Hela cells is monitored successfully. This work demonstrates the construction of nano-biosensors based on N-GOQDs with bright fluorescence, high-stability, and good biocompatibility.
细胞内pH值(pHi)对于细胞和生物体的功能至关重要。因此,开发用于探测pHi的纳米传感器具有重大的科学和技术意义。在这项工作中,制备了荧光效率为54%的氮掺杂氧化石墨烯量子点(N-GOQDs)。在340nm激发的荧光光谱在430和520nm处有两个明显的峰。有趣的是,当pH值从3.6增加到10.5时,430nm处的蓝色峰略有变化,而520nm处的绿色峰显著猝灭。荧光强度的变化也可以通过荧光颜色的变化来反映。双发射N-GOQDs被开发为用于pHi的比率荧光探针,可避免诸如探针浓度、光程长度和探测器效率等多种偏差的影响。作为概念验证,成功监测了Hela细胞的pHi。这项工作展示了基于具有明亮荧光、高稳定性和良好生物相容性的N-GOQDs构建纳米生物传感器。