Extracellular vesicles (EVs) are membrane-enclosed biological nanoparticles withpotential as diagnostic markers and carriers for therapeutics. Characterizationof EVs poses severe challenges due to their complex structure andcomposition, requiring the combination of orthogonal analytical techniques.Here, we demonstrate how liquid chromatography combined with multi-anglelight scattering (MALS) and fluorescence detection in one single apparatuscan provide multiparametric characterization of EV samples, includingconcentration of particles, average diameter of the particles, proteinamount to particle number ratio, presence of EV surface markers andlipids, EV shape, and sample purity. The method requires a small amountof sample of approximately 10(7) EVs, limited handling ofthe sample and data analysis time in the order of minutes; it is fullyautomatable and can be applied to both crude and purified samples.

Multiparametric Orthogonal Characterization of Extracellular Vesicles by Liquid Chromatography Combined with In-Line Light Scattering and Fluorescence Detection

Manno Mauro;Bongiovanni Antonella;
2023

Abstract

Extracellular vesicles (EVs) are membrane-enclosed biological nanoparticles withpotential as diagnostic markers and carriers for therapeutics. Characterizationof EVs poses severe challenges due to their complex structure andcomposition, requiring the combination of orthogonal analytical techniques.Here, we demonstrate how liquid chromatography combined with multi-anglelight scattering (MALS) and fluorescence detection in one single apparatuscan provide multiparametric characterization of EV samples, includingconcentration of particles, average diameter of the particles, proteinamount to particle number ratio, presence of EV surface markers andlipids, EV shape, and sample purity. The method requires a small amountof sample of approximately 10(7) EVs, limited handling ofthe sample and data analysis time in the order of minutes; it is fullyautomatable and can be applied to both crude and purified samples.
2023
Istituto di Biofisica - IBF
Istituto per la Ricerca e l'Innovazione Biomedica -IRIB
FIELD-FLOW FRACTIONATION; SIZE
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/458227
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