Skip to main content
. Author manuscript; available in PMC: 2018 Dec 1.
Published in final edited form as: Mol Syst Des Eng. 2017 Oct 24;2(5):624–628. doi: 10.1039/c7me00055c

Figure 3.

Figure 3

Adsorption of Pro-Rho on the nanoparticle scaffolds used. a) Adsorption curves of Pro-Rho on each NP in PBS. Adsorbed Pro-Rho molecules on the NPs were plotted as function of Pro-Rho concentration. b) Schematic representations of the cooperative adsorption mechanism observed in DMTolA-NP featuring compact monolayer: The first adsorbed molecules favour the further adsorption of substrate c) Non-cooperative adsorption of substrate on TTMA-NP. The adsorption of Pro-Rho molecules is only dependent on its concentration in solution. Adsorbed molecules do not influence the further adsorption of substrate. Mean values ± standard deviation, N = 3