Sun Yuhuan, Zhao Chuanqi, Niu Jingsheng, Ren Jinsong, Qu Xiaogang
Laboratory of Chemical Biology and State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, Anhui 230026, China.
ACS Cent Sci. 2020 Feb 26;6(2):207-212. doi: 10.1021/acscentsci.9b01104. Epub 2020 Jan 29.
Sensing bacterial infections and monitoring drug resistance are very important for the selection of treatment options. However, the common methods of sensing resistance are limited by time-consuming, the requirement for professional personnel, and expensive instruments. Moreover, the abuse of antibiotics causes the accelerated process of bacterial resistance. Herein, we construct a portable paper-based band-aid (PBA) which implements a selective antibacterial strategy after sensing of drug resistance. The colors of PBA indicate bacterial infection (yellow) and drug resistance (red), just like a bacterial resistance colorimetric card. On the basis of color, antibiotic-based chemotherapy and Zr-MOF PCN-224-based photodynamic therapy (PDT) are used on site to treat sensitive and resistant strains, respectively. Eventually, it takes 4 h to sense, and the limit of detection is 10 CFU/mL for drug-resistant . Compared with traditional PDT-based antibacterial strategies, our design can alleviate off-target side effects, maximize therapeutic efficacy, and track the drug resistance in real time with the naked eye. This work develops a new way for the rational use of antibiotics. Given the low cost and easy operation of this point-of-care device, it can be developed for practical applications.
检测细菌感染和监测耐药性对于治疗方案的选择非常重要。然而,常用的耐药性检测方法受到耗时、需要专业人员以及仪器昂贵的限制。此外,抗生素的滥用导致细菌耐药性加速发展。在此,我们构建了一种便携式纸质创可贴(PBA),它在检测到耐药性后实施选择性抗菌策略。PBA的颜色指示细菌感染(黄色)和耐药性(红色),就像一张细菌耐药性比色卡。基于颜色,分别在现场使用基于抗生素的化疗和基于Zr-MOF PCN-224的光动力疗法(PDT)来治疗敏感菌株和耐药菌株。最终,检测耗时4小时,耐药性的检测限为10 CFU/mL。与传统的基于PDT的抗菌策略相比,我们的设计可以减轻脱靶副作用,使治疗效果最大化,并能用肉眼实时追踪耐药性。这项工作为合理使用抗生素开辟了一条新途径。鉴于这种即时检测设备成本低且操作简便,它可以开发用于实际应用。