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刘晓荣, 杨珍珍, 刘亮, 等. 基于树枝状介孔硅/金纳米簇组装体的胆固醇比率荧光传感研究J. 桂林电子科技大学学报, 2025, 45(5): 511-517. DOI: 10.16725/j.1673-808X.2023176
引用本文: 刘晓荣, 杨珍珍, 刘亮, 等. 基于树枝状介孔硅/金纳米簇组装体的胆固醇比率荧光传感研究J. 桂林电子科技大学学报, 2025, 45(5): 511-517. DOI: 10.16725/j.1673-808X.2023176
LIU Xiaorong, YANG Zhenzhen, LIU Liang, et al. Ratiometric fluorescence sensing of cholesterol based on dendritic mesoporous silicon/gold nanocluster assemblies J. Journal of Guilin University of Electronic Technology, 2025, 45(5): 511-517. DOI: 10.16725/j.1673-808X.2023176
Citation: LIU Xiaorong, YANG Zhenzhen, LIU Liang, et al. Ratiometric fluorescence sensing of cholesterol based on dendritic mesoporous silicon/gold nanocluster assemblies J. Journal of Guilin University of Electronic Technology, 2025, 45(5): 511-517. DOI: 10.16725/j.1673-808X.2023176

基于树枝状介孔硅/金纳米簇组装体的胆固醇比率荧光传感研究

Ratiometric fluorescence sensing of cholesterol based on dendritic mesoporous silicon/gold nanocluster assemblies

  • 摘要: 血清胆固醇含量是临床诊断和健康管理的重要指标之一。构建一种比率型的胆固醇荧光传感器,其中罗丹明B作为荧光参比探针(荧光强度为F1),巯基-β-环糊精-金纳米簇作为荧光测量探针(荧光强度为F2)。金纳米簇荧光材料与罗丹明B染料通过静电作用共同组装于树枝状介孔硅载体上,基于环糊精空腔与胆固醇之间的主客体识别作用使金纳米簇荧光增强原理实现对血清胆固醇的测定。实验结果表明,响应平衡时间为1 min,响应pH值为6.0,响应温度为28 ℃时,胆固醇检测灵敏度最高,标准曲线方程为:F2/F1 = 0.0209 C+ 1.4490R2 = 0.99,线性范围为5.00 ~ 50.00 μmol·L−1,检测限为4.30 μmol·L−1 (S/N = 3)。血清中常见的共存物不干扰胆固醇的测定。该比率型探针避免了复杂的生物基质背景等环境因素的干扰,可灵敏、快速实现胆固醇的无酶测定。

     

    Abstract: The level of cholesterol in human serum acts as one of the important indicators for clinical diagnosis and health management. A ratiometric fluorescence sensor was constructed for cholesterol detection, in which mercapto-β-cyclodextrin-gold nanoclusters were used as sensing probes and rhodamine B as reference probes. Gold nanoclusters and rhodamine B dye were co-assembled on a dendritic mesoporous silica substrate with electrostatic interaction. Based on the enhanced fluorescence of gold nanoclusters caused by the host-guest recognition between the cyclodextrin cavity and cholesterol, the determination of serum cholesterol is realized. Experimental results show that the highest detection sensitivity is obtained when the reaction time is 1 min, the media pH value is 6.0 and the reaction temperature is 28 ℃. The calibration curve can be expressed as F2/F1= 0.0209 C+ 1.4490 in the concentration range of 5.00 ~ 50.00 μmol·L−1. Common coexisting components in the serum did not interfere with the detection of cholesterol. The ratiometric probe obviates the interference of background fluorescence in a complex biological matrix. The method provides a sensitive and rapid determination of cholesterol.

     

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