Gao Yangyang, Dong Qigeqi, Lan Shi, Cai Qian, Simalou Oudjaniyobi, Zhang Shiqi, Gao Ge, Chokto Harnoode, Dong Alideertu
⊥College of Science, Inner Mongolia Agricultural University, Hohhot 010018, People's Republic of China.
||Département de Chimie, Faculté Des Sciences (FDS), Université de Lomé (UL), BP 1515 Lome, Togo.
ACS Appl Mater Interfaces. 2015 May 13;7(18):10022-33. doi: 10.1021/acsami.5b02472. Epub 2015 May 1.
Quantum dots (QDs) as potent candidates possess advantageous superiority in fluorescence imaging applications, but they are susceptible to the biological circumstances (e.g., bacterial environment), leading to fluorescence quenching or lose of fluorescent properties. In this work, CdTe QDs were embedded into mesoporous silica nanospheres (m-SiO2 NSs) for preventing QD agglomeration, and then CdTe QD-embedded m-SiO2 NSs (m-SiO2/CdTe NSs) were modified with Ag nanoparticles (Ag NPs) to prevent bacteria invasion for enhanced anticounterfeit applications. The m-SiO2 NSs, which serve as intermediate layers to combine CdTe QDs with Ag NPs, help us establish a highly fluorescent and long-term antibacterial system (i.e., m-SiO2/CdTe/Ag NSs). More importantly, CdTe QD-embedded m-SiO2 NSs showed fluorescence quenching when they encounter bacteria, which was avoided by attaching Ag NPs outside. Ag NPs are superior to CdTe QDs for preventing bacteria invasion because of the structure (well-dispersed Ag NPs), size (small diameter), and surface charge (positive zeta potentials) of Ag NPs. The plausible antibacterial mechanisms of m-SiO2/CdTe/Ag NSs toward both Gram-positive and Gram-negative bacteria were established. As for potential applications, m-SiO2/CdTe/Ag NSs were developed as fluorescent anticounterfeiting ink for enhanced imaging applications.
量子点(QDs)作为有力的候选者,在荧光成像应用中具有优势,但它们易受生物环境(如细菌环境)影响,导致荧光猝灭或荧光特性丧失。在这项工作中,将碲化镉量子点嵌入介孔二氧化硅纳米球(m-SiO₂ NSs)中以防止量子点团聚,然后用银纳米颗粒(Ag NPs)对嵌入碲化镉量子点的m-SiO₂纳米球(m-SiO₂/CdTe NSs)进行修饰,以防止细菌入侵,用于增强防伪应用。m-SiO₂纳米球作为将碲化镉量子点与银纳米颗粒结合的中间层,帮助我们建立了一个高荧光且长期抗菌的体系(即m-SiO₂/CdTe/Ag NSs)。更重要的是,嵌入碲化镉量子点的m-SiO₂纳米球遇到细菌时会出现荧光猝灭,而在其外部附着银纳米颗粒可避免这种情况。由于银纳米颗粒的结构(分散良好的银纳米颗粒)、尺寸(小直径)和表面电荷(正ζ电位),银纳米颗粒在防止细菌入侵方面优于碲化镉量子点。建立了m-SiO₂/CdTe/Ag NSs对革兰氏阳性菌和革兰氏阴性菌的合理抗菌机制。至于潜在应用,m-SiO₂/CdTe/Ag NSs被开发为用于增强成像应用的荧光防伪墨水。