School of Foreign Languages, Jilin Normal University, Siping 136000, China.
Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Changchun 130103, China.
Molecules. 2024 Jul 30;29(15):3593. doi: 10.3390/molecules29153593.
The early monitoring and inactivation of bacteria are of crucial importance in preventing the further spread of foodborne pathogens. (), a prototypical foodborne pathogen, is widely present in the natural environment and has the capability to trigger a range of diseases at low concentrations. In this work, we designed FeO@SiO-Au core-shell-satellite nanocomposites (NCs) modified with aptamer for efficient capture, high-sensitivity surface-enhanced Raman scattering (SERS) detection, and photothermal therapy (PTT) against . FeO@SiO-Au NCs with tunable Au nanocrystal nanogaps were prepared. By combining the finite-difference time-domain (FDTD) method and experimental results, we studied the electric field distribution of FeO@SiO-Au under different Au nanogaps and ultimately obtained the optimal SERS substrate FSA-60. The modification of aptamer on the surfaces of FSA-60 could be used for the specific capture and selective detection of , achieving a detection limit of as low as 50 cfu/mL. Furthermore, Apt-FSA-60 possessed excellent photothermal properties, demonstrating the strong photothermal killing ability against . Therefore, Apt-FSA-60 is a promising high-sensitivity SERS substrate and efficient photothermal agent and is expected to be widely applied and promoted in future disease prevention and treatment.
早期监测和灭活细菌对于防止食源性病原体的进一步传播至关重要。 ()是一种典型的食源性病原体,广泛存在于自然环境中,即使在低浓度下也有能力引发多种疾病。在这项工作中,我们设计了一种修饰有适体的 FeO@SiO-Au 核壳卫星纳米复合材料(NCs),用于高效捕获、高灵敏度表面增强拉曼散射(SERS)检测和光热治疗(PTT)。FeO@SiO-Au NCs 具有可调谐的 Au 纳米晶纳米间隙。通过结合有限差分时域(FDTD)方法和实验结果,我们研究了不同 Au 纳米间隙下 FeO@SiO-Au 的电场分布,并最终获得了最佳的 SERS 基底 FSA-60。FSA-60 表面修饰适体可用于 的特异性捕获和选择性检测,检测限低至 50 cfu/mL。此外,Apt-FSA-60 具有优异的光热性能,对 表现出很强的光热杀伤能力。因此,Apt-FSA-60 是一种很有前途的高灵敏度 SERS 基底和高效光热试剂,有望在未来的疾病预防和治疗中得到广泛应用和推广。