聚类分析
受体
磷酸化
生物系统
生物物理学
调制(音乐)
细胞
显微镜
计算生物学
化学
细胞生物学
生物
散射
计算机科学
等离子体子
物理
纳米技术
细胞迁移
材料科学
星团(航天器)
细胞表面受体
农业
细胞信号
光学
作者
Xingru Fang,Baomei Zhou,Xi Zhang,Xurui Cao,Xueni Wang,Qi Li,Yu Zhang,Honglin Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-07-06
标识
DOI:10.1021/acs.nanolett.6c02867
摘要
Higher-order receptor clustering on cell surfaces as an artificial switch becomes increasingly pivotal for signal transduction and targeted therapy, yet its real-time and long-term tracking remains limited by photobleaching and endpoint-only assays. Here, we develop a color-changing plasmon-ruler via DNA-guided quantized assembly of small gold nanoparticles (GNPs) onto a large GNP core. Coupling aptamer specificity with plasmonic clustering optics, this system enables real-time projection and in situ modulation of heterotypic MET and TfR higher-order clustering at the single-cell level. Under dark-field microscopy (DFM), controllable GNP assembly projects continuous spatiotemporal receptor transitions from loose to dense states, with plasmon scattering converted into pseudocolors for direct visualization. Biological assays confirmed a strong correlation between color changes and the degree of clustering, reducing Met and Akt phosphorylation by ∼2.3- and ∼1.5-fold, and decreasing cell migration from 71.6% to 50.1%. This plasmon-ruler establishes a new strategy for multidimensional imaging of receptor clustering dynamics.
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