细胞外小泡
分辨率(逻辑)
材料科学
高分辨率
衍射
纳米技术
检出限
光子上转换
纳米颗粒
超分辨率
兴奋剂
生物系统
分析化学(期刊)
化学
计算机科学
光学
物理
光电子学
生物
色谱法
细胞生物学
遥感
人工智能
地质学
图像(数学)
作者
Guan Huang,Yongtao Liu,Dejiang Wang,Ying Zhu,Shihui Wen,Juanfang Ruan,Dayong Jin
出处
期刊:eLight
[Springer Nature]
日期:2022-10-10
卷期号:2 (1)
被引量:36
标识
DOI:10.1186/s43593-022-00031-1
摘要
Abstract Although small EVs (sEVs) have been used widely as biomarkers in disease diagnosis, their heterogeneity at single EV level has rarely been revealed. This is because high-resolution characterization of sEV presents a major challenge, as their sizes are below the optical diffraction limit. Here, we report that upconversion nanoparticles (UCNPs) can be used for super-resolution profiling the molecular heterogeneity of sEVs. We show that Er 3+ -doped UCNPs has better brightness and Tm 3+ -doped UCNPs resulting in better resolution beyond diffraction limit. Through an orthogonal experimental design, the specific targeting of UCNPs to the tumour epitope on single EV has been cross validated, resulting in the Pearson’s R-value of 0.83 for large EVs and ~ 65% co-localization double-positive spots for sEVs. Furthermore, super-resolution nanoscopy can distinguish adjacent UCNPs on single sEV with a resolution of as high as 41.9 nm. When decreasing the size of UCNPs from 40 to 27 nm and 18 nm, we observed that the maximum UCNPs number on single sEV increased from 3 to 9 and 21, respectively. This work suggests the great potentials of UCNPs approach “digitally” quantify the surface antigens on single EVs, therefore providing a solution to monitor the EV heterogeneity changes along with the tumour progression progress.
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