Effective repulsive interaction between Janus polymer-grafted nanoparticles adhering to lipid vesicles

J Jordan F. Darling (Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,) A Abash Sharma (Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,) Y Yu Zhu E Eric J. Spangler (Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,) M Mohamed Laradji (Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,)

Abstract

The adhesion of nanoparticles to lipid vesicles causes curvature deformations to the membrane to an extent determined by the competition between the adhesive interaction and the membrane’s elasticity. These deformations can extend over length scales larger than the size of a nanoparticle, leading to an effective membrane-curvature-mediated interaction between nanoparticles. Nanoparticles with uniform surfaces tend to aggregate into unidimensionally close-packed clusters at moderate adhesion strengths and endocytose at high adhesion strengths. Here, we show that the suppression of close-packed clustering and endocytosis can be achieved by the surface modification of the nanoparticles into Janus particles where a moiety of their surface is grafted with polymers under a good solvent condition. The osmotic pressure of the polymer brushes prevents membrane wrapping of the nanoparticles’ moieties that are grafted with polymers, thus suppressing their endocytosis. Furthermore, a repulsion between polymer brushes belonging to two nearby nanoparticles destabilizes the dimerization of the nanoparticles over a wide range of values of the polymers’ molecular weight and grafting density. This surface modification of nanoparticles should allow for reliable, non-close-packed, and tunable self-assemblies of nanoparticles.

Article Details

Volume / Issue Vol. 162, Issue 3
Published January 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (5)

J

Jordan F. Darling

Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,

A

Abash Sharma

Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,

Y

Yu Zhu

E

Eric J. Spangler

Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,

M

Mohamed Laradji

Department of Physics and Materials Science, The University of Memphis 1 , Memphis, Tennessee 38152,