Variable
Nanoparticle-Cell Adhesion Strength Regulates Cellular Uptake
Abstract
In receptor-mediated endocytosis, cells exercise biochemical control over the mechanics of adhesion to engulf
foreign particles, featuring a variable adhesion strength. Here we present a thermodynamic model with which
we elucidate that the variable adhesion strength critically governs the cellular uptake, yielding an uptake phase
diagram in the space of ligand density and particle size. We identify from the diagram an endocytosed phase
with markedly high uptake, encompassed by a lower and an upper phase boundary that are set, respectively, by
the enthalpic and entropic limits of the adhesion strength. The phase diagram may provide useful guidance to
the rational design of nanoparticle-based therapeutic and diagnostic agents.