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Updated: Apr 30, 2026

Author Spotlight: Development of a Large-Scale, Reproducible Production Method for Exosome Mimetics Using Magnetic Nanoparticles
Published on: January 26, 2024
Merging Biological and Synthetic Nanoplatforms: Magnetic Engineering of Extracellular Vesicles via Liposome Fusion
Sofia Liz-Basteiro1, Marine Sagastuy2, Jose Efrain Perez1
1Laboratoire Physique des Cellules et Cancer, PCC, CNRS UMR168, Institut Curie, Sorbonne Université, PSL Research University, 75005 Paris, France.
Abstract:
Extracellular vesicles (EVs), liposomes, and magnetic nanoparticles (MNPs) are key nanoplatforms in biomedicine, motivating their integration into hybrid systems. Here, we engineer magnetic EV-liposome hybrids using fusogenic liposomes preloaded with MNPs and establish a multilevel framework to characterize their formation and function. Orthogonal single-particle analyses, including nanoparticle tracking, resistive pulse sensing, high-resolution flow cytometry, and electron microscopy, reveal rapid EV-liposome association into 100-200 nm Janus-like hybrids. Magnetic nanoparticles enable direct visualization of association dynamics by magnetophoresis at ensemble and single-particle levels. Protein assays and Western blotting confirm preservation of EV markers (CD63, CD81, Syntenin-1) and vesicle integrity. Functionally, magnetic guidance enhances hybrid uptake by cancer cells, combining biological tropism with external targeting. This strategy enables controlled engineering of magnetic EV hybrids with preserved identity and multifunctionality, and provides a methodological advance for monitoring nanoscale membrane fusion toward precision theranostics.
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