Lu Jin-Ye, Zhang Peng-Li, Chen Qiu-Yun
School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, China.
ACS Appl Bio Mater. 2020 Jan 21;3(1):458-465. doi: 10.1021/acsabm.9b00905. Epub 2019 Dec 13.
Drug-resistant bacteria challenge the antimicrobial agents and antibacterial strategy. To develop environmental friendly smart technology for treating pathogens, we report a kind of photoactivated nano-BODIPY (BCNBA@ZIF). First BODIPY compound (BC) was synthesized by coupling phenethyl caffeate (CAPE) with brominated BODIPY through B-O bonds. Next, BC was encapsulated in ZIF-8 together with 2-nitrobenzaldehyde (o-NBA) to form photoactivated BCNBA@ZIF nanoparticles. TEM confirm the structural change of BCNBA@ZIF after illumination. BCNBA@ZIF is less toxic to cells without illumination. Under illumination of blue LED light, the BCNBA@ZIF worked as a photoacid generator initiating the damage of ZIF shell with the release of BC, metal ions, and the production of singlet oxygen for achieving multifunctional antibacterial uses. Therefore, BCNBA@ZIF is a kind of photodriven smart "Domino" agent for bacterial inhibition.
耐药细菌对抗菌药物和抗菌策略构成了挑战。为了开发用于治疗病原体的环境友好型智能技术,我们报道了一种光活化纳米硼二吡咯(BCNBA@ZIF)。首先,通过将咖啡酰苯乙酯(CAPE)与溴化硼二吡咯通过B-O键偶联合成硼二吡咯化合物(BC)。接下来,将BC与2-硝基苯甲醛(o-NBA)一起封装在ZIF-8中,形成光活化的BCNBA@ZIF纳米颗粒。透射电子显微镜(TEM)证实了光照后BCNBA@ZIF的结构变化。未光照时,BCNBA@ZIF对细胞毒性较小。在蓝色发光二极管(LED)光照下,BCNBA@ZIF作为光酸发生器,引发ZIF外壳的破坏,释放出BC、金属离子,并产生单线态氧,以实现多功能抗菌用途。因此,BCNBA@ZIF是一种用于细菌抑制的光驱动智能“多米诺”试剂。