Mo Jingwen, Shen Long, Xu Qian, Zeng Jiaying, Sha Jingjie, Hu Tao, Bi Kedong, Chen Yunfei
Jiangsu Key Laboratory for Design & Manufacture of Micro/Nano Biomedical Instruments and School of Mechanical Engineering, Southeast University, Nanjing 210096, China.
School of Public Health, Southeast University, Nanjing 210009, China.
Nanomaterials (Basel). 2019 Nov 28;9(12):1700. doi: 10.3390/nano9121700.
We describe here an Nd-sensitized upconversion fluorescent sensor for epirubicin (EPI) detection in aqueous solutions under 808 nm laser excitation. The upconversion fluorescence of nanoparticles is effectively quenched in the presence of EPI via a fluorescence resonance energy transfer mechanism. The dynamic quenching constant was 2.10 × 10 M. Normalized fluorescence intensity increased linearly as the EPI concentration was raised from 0.09 μM to 189.66 μM and the fluorometric detection limit was 0.05 μM. The sensing method was simple, fast, and low-cost and was able to be applied to determine the levels of EPI in urine with spike recoveries from 97.5% to 102.6%. Another important feature of the proposed fluorescent sensor is that it holds a promising potential for in vivo imaging and detection due to its distinctive properties such as weak autofluorescence, low heating effect, and high light penetration depth.
我们在此描述一种钕敏化的上转换荧光传感器,用于在808 nm激光激发下检测水溶液中的表柔比星(EPI)。在EPI存在下,通过荧光共振能量转移机制,纳米颗粒的上转换荧光被有效猝灭。动态猝灭常数为2.10×10 M。随着EPI浓度从0.09 μM提高到189.66 μM,归一化荧光强度呈线性增加,荧光检测限为0.05 μM。该传感方法简单、快速且成本低,能够用于测定尿液中EPI的含量,加标回收率为97.5%至102.6%。所提出的荧光传感器的另一个重要特征是,由于其具有诸如弱自发荧光、低加热效应和高光穿透深度等独特特性,它在体内成像和检测方面具有广阔的应用前景。