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PMID: 42296185 已发表 · ppublish 英语

An Aptamer-Engineered Phenotyping System for Extracellular Vesicles Based on Honeycomb-like Melamine-Formaldehyde Microspheres and Carbon Dot Nanozymes.

Analytical chemistry ·第 98 卷 ·第 25 期 ·2026-06-30

Li J, Xu L, Fan H, Xie XL, Wu CT, Liu Y, Gong W, Li L, Xing H

摘要

Molecular phenotyping of extracellular vesicles (EVs) holds promise for noninvasive cancer diagnosis; however, current methodologies encounter limitations in cost, throughput, and sensitivity. Herein, we developed an aptamer-engineered phenotyping system designed for multiplexed, cost-effective, and user-friendly detection of EV membrane proteins, utilizing a sensing array constructed from two tailored functional materials. Initially, amino-rich, honeycomb-like melamine-formaldehyde microspheres were functionalized with CD63 aptamers to facilitate efficient EV capture. Subsequently, iron-doped carbon dot nanozymes with high peroxidase-like activity were conjugated to aptamers targeting CD63, HER2, MUC1, and PD-L1, thereby providing specific recognition and colorimetric signal amplification. The working principle of the system was thoroughly validated by multiple techniques, including nanoflow cytometric analysis. The system exhibited a wide linear detection range (103-107 particles/mL) and high capture efficiency (∼4.5 × 107 particles/mg), and successfully distinguished EVs from eight cell lines, comprising two normal and six cancerous types. In clinical validation, the system effectively differentiated early stage breast or pancreatic cancer patients from healthy controls using only 50 μL of 1000-fold diluted plasma (equivalent to 50 nL neat plasma) without ultracentrifugation, with diagnostic performance surpassing traditional serum biomarkers. This work presents a practical EV phenotyping system that integrates capture, recognition, signal amplification, and machine-learning classification, offering a promising liquid-biopsy approach for early cancer screening.

文献信息
期刊
Analytical chemistry
期刊简称
Anal Chem
ISSN
1520-6882
发表日期
2026-06-30
语言
英语
国家/地区
United States
NLM ID
0370536
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