Novel biomimetic hybrid plasmonic nanocavity-based ECL strategy for the detection of extracellular vesicles.
Tumor-derived extracellular vesicles detection has emerged as an important clinical liquid biopsy approach for cancer diagnosis.
APA
Wang P, Liang Z, et al. (2024). Novel biomimetic hybrid plasmonic nanocavity-based ECL strategy for the detection of extracellular vesicles.. Biosensors & bioelectronics, 264, 116639. https://doi.org/10.1016/j.bios.2024.116639
MLA
Wang P, et al.. "Novel biomimetic hybrid plasmonic nanocavity-based ECL strategy for the detection of extracellular vesicles.." Biosensors & bioelectronics, vol. 264, 2024, pp. 116639.
PMID
39121617
Abstract
Tumor-derived extracellular vesicles detection has emerged as an important clinical liquid biopsy approach for cancer diagnosis. In this work, we developed a novel hybrid plasmonic nanocavity consisting of hexagonal Au nanoplates nanoarray, SnS/Au nanosheet layer and biomimetic lipid bilayer. Firstly, the hybrid plasmonic nanocavity combined the optical confinement for the ECL regulation and the biological recognition for the detection of extracellular vesicles. Secondly, MXene-derived TiN QDs have been prepared as ECL nanoprobe to label extracellular vesicles. Moreover, biomimetic lipid bilayer with specific aptamer was used to identify extracellular vesicles and integrate TiN QDs into the nanocavity with membrane fusion strategy. Due to the significant electromagnetic field enhancement at the cavity region, the hybrid plasmonic nanocavity provided strong field confinement to concentrate and redistribute the ECL emission of QDs with a 9.3-fold enhancement. The hybrid plasmonic nanocavity-based ECL sensing system improved the spatial controllability of EVs analysis and the accurate resolution of specific protein. It achieved the sensitive detection of extracellular vesicles in ascites and successfully distinguished the peritoneal metastasis of gastric cancer.
MeSH Terms
Extracellular Vesicles; Humans; Biosensing Techniques; Gold; Biomimetic Materials; Quantum Dots; Biomimetics; Stomach Neoplasms; Lipid Bilayers
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