化学
体内
荧光团
荧光
纳米探针
体外
泡沫电池
小泡
细胞内
细胞
离体
生物物理学
细胞生物学
流式细胞术
生物化学
分子生物学
膜
巨噬细胞
生物
物理
生物技术
量子力学
作者
Moxuan Ji,Yongchun Wei,Zhuo Ye,Xiaoqin Hong,Xiaoxuan Yu,Rui Du,Qiang Li,Wei Sun,Dingbin Liu
摘要
Real-time monitoring of the development of atherosclerosis (AS) is key to the management of cardiovascular disease (CVD). However, existing laboratory approaches lack sensitivity and specificity, mostly due to the dearth of reliable AS biomarkers. Herein, we developed an in vivo fluorescent labeling strategy that allows specific staining of the foam cell-derived extracellular vesicles (EVs) in atherosclerotic plaques, which are released into the blood as circulating biomarkers for in vitro detection of AS. This strategy relies on a self-assembled nanoprobe that could recognize foam cells specifically, where the probe is degraded by the intracellular HClO to produce a trifluoromethyl-bearing boron-dipyrromethene fluorophore (termed B-CF3), a lipophilic dye that can be transferred to the exosomal membranes. These circulating B-CF3-stained EVs can be detected directly on a fluorescence spectrometer or microplate reader without resorting to any sophisticated analytical method. This liquid-biopsy format enables early detection and real-time differentiation of lesion vulnerability during AS progression, facilitating effective CVD management.
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