Liu Ao, Chen Yiqiao, Yang Biwen, Guo Zhouyi, Mo Luoqi, Chen Haolin, Tao Chenglong, Su Chengkang, Liu Zhiming
MOE Key Laboratory of Laser Life Science & Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.
Department of Hematology, The Seventh Affiliated Hospital, Sun Yat-sen University, Shenzhen 518107, China.
Nanophotonics. 2022 Sep 29;11(22):5121-5131. doi: 10.1515/nanoph-2022-0468. eCollection 2022 Dec.
Fluorescence microscopy based on fluorochrome has been rapidly developed as the candidate for morphological identification of pathogenic fungi over recent years, offering superior rapidity and efficacy over traditional culture methods. However, the intrinsic quenching properties of fluorescein limit the clinical application of fluorescence imaging. Herein, we report a nano-strategy by converting a commercial fluorescein dye, fluorescent brightener-33 (FB-33), into carbon dots (FB-CDs) through a one-pot hydrothermal method. FB-CDs exhibit a chitin-targeting capacity allowing the selective recognition and ultrafast imaging of fungi within 30 s. The fluorescence quantum yield of FB-CDs is 51.6% which is 8.6-fold higher than that of commercial dye, FB-33. Moreover, FB-CDs also display superstable fluorescence signals under continuous intense light irradiation for 2 h and long-term storage for more than 2 months. The significantly improved photobleaching resistance meets the prolonged fluorescence observation and quantitative analysis of microbial samples. This work offers a novel nanoconversion strategy of commercial dyes for point-of-care testing of pathogenic organisms.
近年来,基于荧光染料的荧光显微镜作为致病真菌形态学鉴定的候选方法得到了迅速发展,与传统培养方法相比具有更高的速度和效率。然而,荧光素的固有淬灭特性限制了荧光成像的临床应用。在此,我们报道了一种纳米策略,通过一锅水热法将商业荧光染料荧光增白剂-33(FB-33)转化为碳点(FB-CDs)。FB-CDs具有几丁质靶向能力,能够在30秒内对真菌进行选择性识别和超快成像。FB-CDs的荧光量子产率为51.6%,比商业染料FB-33高8.6倍。此外,FB-CDs在连续强光照射2小时和长期储存2个月以上的情况下也能显示出超稳定的荧光信号。显著提高的抗光漂白性能满足了对微生物样品进行长时间荧光观察和定量分析的需求。这项工作为致病生物体的即时检测提供了一种新型的商业染料纳米转化策略。