activity
20152017
most citedContact inhibition of locomotion and junctional mechanics guide collective cell behavior in epithelial wound repair

1 citations · 1 across the 2 of their papers we have counts for

collaborators

5 papers

physics.bio-ph2017★ 1 cited

Contact inhibition of locomotion and junctional mechanics guide collective cell behavior in epithelial wound repair

Luke Coburn, Irin-Maya Schouwenaar, Hender Lopez +3

Epithelial tissues form physically integrated barriers against the external environment protecting organs from infection and invasion. Within each tissue, epithelial cells respond…

cond-mat.soft2016

Using single nanoparticle tracking obtained by nanophotonic force microscopy to simultaneously characterize nanoparticle size distribution and nanoparticle-surface interactions

Delyan R. Hristov, Dong Ye, Joao Medeiros de Araújo +6

Comprehensive characterization of nanomaterials for medical applications is a challenging and complex task due to the multitude of parameters which need to be taken into considerat…

physics.bio-ph2016

Contact inhibition of locomotion and mechanical cross-talk between cell-cell and cell-substrate adhesion determines the pattern of junctional tension in epithelial cell aggregates

Luke Coburn, Hender Lopez, Adrian Noppe +9

We generated a computational approach to analyze the biomechanics of epithelial cell aggregates, either island or stripes or entire monolayers, that combines both vertex and contac…

cond-mat.soft2015

Multiscale modelling of bionano interface

Hender Lopez, Erik Brandt, Alexander Mirzoev +3

In this work we describe a set of Coarse-grained (CG) tools that allow to simulate the uptake of the nanoparticles (NPs) coated with proteins by a lipid bilayer. We describe a CG m…

cond-mat.soft2015

Coarse-grained model of adsorption of blood plasma proteins onto nanoparticles

Hender Lopez, Vladimir Lobaskin

We present a coarse-grained model for evaluation of interactions of globular proteins with nanoparticles. The protein molecules are represented by one bead per aminoacid and the na…