细胞外小泡
原位
小RNA
小泡
仿形(计算机编程)
微泡
细胞外
化学
生物物理学
细胞生物学
纳米技术
材料科学
生物
生物化学
计算机科学
膜
基因
操作系统
有机化学
作者
Yanli Gong,Jianzhou Feng,Qianqian Li,Qi Niu,An Yu,Jiao Cao,Yingbin Liu,Lingling Wu,Chaoyong Yang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-07-23
标识
DOI:10.1021/acsnano.5c05340
摘要
Co-profiling of microRNAs (miRNAs) and membrane proteins of tumor-derived extracellular vesicles (tEVs) is crucial for accurate tumor diagnosis. However, it is hindered by the low abundance of tEVs and the challenge of simultaneous signal transformation from internal and surface markers due to the membrane barrier. Here, we engineered a fluid nanoforest interface (FluidforestFace) within a microfluidic chip by coating supported lipid bilayers (SLBs) on nanoforest substrates, enabling the efficient capture of tEVs and in situ profiling of tEV miRNAs and surface proteins. FluidforestFace offered a large surface area and generated nanovortices with localized low velocities, facilitating the efficient capture of tEVs (∼86.8%). Upon membrane fusion, tEV miRNAs diffused into probe-encapsulated substrates for in situ detection. Meanwhile, tEV membrane proteins were diluted onto SLBs to avoid molecular crowding, which allowed efficient signal amplification reactions for sensitive protein detection using a readily accessible wide-field fluorescence microscope. By codetecting three important miRNA and membrane protein markers, FluidforestFace achieved high diagnostic accuracy for pancreatic cancer patients (n = 38) compared to healthy individuals (n = 12, ∼98.9%) and pancreatitis patients (n = 13, ∼92.9%), indicating its potential for clinical applications.
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