School of Public Health, Guilin Medical University, Guilin 541199, China.
Guangxi Key Laboratory of Environmental Pollution Control Theory and Technology, Guangxi Normal University, Guilin 541006, China.
Int J Mol Sci. 2023 Feb 2;24(3):2920. doi: 10.3390/ijms24032920.
Liquid crystals (LCs) are a very important display material. However, the use of LC, especially LC-loaded nanoparticles, as a catalyst to amplify the analytical signal and coupled with specific aptamer (Apt) as a recognition element to construct a highly sensitive and selective three-mode molecular spectral assay is rarely reported. In this article, five LCs, such as cholesteryl benzoate (CB), were studied by molecular spectroscopy to indicate the liquid crystal nanoparticles in the system, and highly catalytic and stable CB loaded-nanosilver (CB@AgNPs) sol was prepared. The slope procedure was used to study the catalysis of the five LCs and CB@AgNPs on the new indicator reaction between AgNO and sodium formate (Fo) to produce silver nanoparticles (AgNPs) with a strong surface plasmon resonance absorption (Abs) peak at 450 nm, a resonance Rayleigh scattering (RRS) peak at 370 nm and a surface enhanced Raman scattering (SERS) peak at 1618 cm in the presence of molecular probes. By coupling the new CB@AgNPs catalytic indicator reaction with the Apt reaction, a new CB@AgNPs catalytic amplification-SERS/RRS/Abs trimode biosensoring platform was constructed for detecting inorganic pollutants, such as Pb, Cd, Hg and As.
液晶(LCs)是一种非常重要的显示材料。然而,将 LC,特别是负载 LC 的纳米粒子,用作催化剂来放大分析信号,并与特定的适体(Apt)结合作为识别元件,构建高灵敏度和选择性的三模式分子光谱分析方法,很少有报道。在本文中,通过分子光谱法研究了五种液晶,如苯甲酸胆固醇酯(CB),以指示系统中的液晶纳米粒子,并制备了具有高催化活性和稳定性的负载纳米银的 CB(CB@AgNPs)溶胶。斜率法研究了五种液晶和 CB@AgNPs 对银(Ag)与甲酸钠(Fo)之间新指示剂反应的催化作用,在分子探针存在下,生成具有强表面等离子体共振吸收(Abs)峰在 450nm、共振瑞利散射(RRS)峰在 370nm 和表面增强拉曼散射(SERS)峰在 1618cm 的纳米银(AgNPs)。通过将新的 CB@AgNPs 催化指示剂反应与 Apt 反应偶联,构建了一种新的 CB@AgNPs 催化放大 SERS/RRS/Abs 三模式生物传感平台,用于检测无机污染物,如 Pb、Cd、Hg 和 As。