Author:
Perez-Potti André,Lopez Hender,Pelaz Beatriz,Abdelmonem Abuelmagd,Soliman Mahmoud G.,Schoen Ingmar,Kelly Philip M.,Dawson Kenneth A.,Parak Wolfgang J.,Krpetic Zeljka,Monopoli Marco P.
Abstract
AbstractAdvances in nanofabrication methods have enabled the tailoring of new strategies towards the controlled production of nanoparticles with attractive applications in healthcare. In many cases, their characterisation remains a big challenge, particularly for small-sized functional nanoparticles of 5 nm diameter or smaller, where current particle sizing techniques struggle to provide the required sensitivity and accuracy. There is a clear need for the development of new reliable characterisation approaches for the physico-chemical characterisation of nanoparticles with significant accuracy, particularly for the analysis of the particles in the presence of complex biological fluids. Herein, we show that the Differential Centrifugal Sedimentation can be utilised as a high-precision tool for the reliable characterisation of functional nanoparticles of different materials. We report a method to correlate the sedimentation shift with the polymer and biomolecule adsorption on the nanoparticle surface, validating the developed core–shell model. We also highlight its limit when measuring nanoparticles of smaller size and the need to use several complementary methods when characterising nanoparticle corona complexes.
Funder
FP7 Namdiatream
Deutsche Forschungsgemeinschaft (DFG) Cluster of Excellence 'Advanced Imaging of Matter'
Force and Motion Foundation
Irish Research Council: Embark scheme
FP7 Nano Solutions
H2020 Biorima
FP7 FutureNanoNeeds
Kidscan Children’s Cancer Research
Publisher
Springer Science and Business Media LLC
Cited by
20 articles.
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