Shaanxi Key Laboratory of Catalysis, School of Chemistry and Environment Science, Shaanxi University of Technology, Hanzhong, Shaanxi 723000, China.
College of Science, Gansu Agricultural University, Lanzhou 730070, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Nov 5;280:121538. doi: 10.1016/j.saa.2022.121538. Epub 2022 Jun 20.
Nanothermometers, which can precisely detect the intracellular temperature changes, have great potential to solve questions concerning the cellular processes. Thus, the temperature sensors that provide fluorescent "turn-on" signals in the biological transparency window are of highly desirable. To meet these criteria, this work reported a new "turn-on" carbon dot (CD)-based fluorescent nanothermometry device for sensing temperature in living cells. The CDs that emit bright red fluorescence (R-CDs; λ = 610 nm in water) were synthesized with o-phenylenediamine as carbon precursor via a facile solvothermal method. The R-CDs in water were almost nonfluorescent at 15 °C. As the temperature increased, the fluorescence intensity of R-CDs exhibited a gradual increase and the final enhancement factor was greater than 21-fold. The fluorescence intensity exhibited a linear response to temperature and a high-sensitive variation of ≈13.3 % °C was detected within a broad temperature range of 28-60 °C. Moreover, the R-CD thermal sensors also exhibited high storage stability, excellent response reversibility and superior photo- and thermo-stability. Due to its good biocompatibility and "intelligent" response to external temperature, the nanothermometer could be applied for sensing temperature changes in biological media.
纳米温度计可以精确地检测细胞内的温度变化,对于解决有关细胞过程的问题具有很大的潜力。因此,提供在生物透明窗口中具有荧光“开启”信号的温度传感器是非常理想的。为了满足这些标准,本工作报道了一种新的基于“开启”碳点(CD)的荧光纳米温度计,用于感测活细胞中的温度。用邻苯二胺作为碳前体制备的红色荧光发射的 CD(R-CDs;在水中为 λ = 610nm)是通过简便的溶剂热法合成的。在 15°C 时,水中的 R-CDs 几乎没有荧光。随着温度的升高,R-CDs 的荧光强度逐渐增加,最终增强因子大于 21 倍。荧光强度与温度呈线性响应,在 28-60°C 的宽温度范围内检测到约 13.3%℃的高灵敏变化。此外,R-CD 热传感器还表现出高存储稳定性、优异的响应可逆性和卓越的光热稳定性。由于其良好的生物相容性和对外部温度的“智能”响应,该纳米温度计可用于感测生物介质中的温度变化。