Visualization of in vitro protein-rejecting properties of PEGylated stealth polycyanoacrylate nanoparticles.

Peracchia, M T; Harnisch, S; Pinto-Alphandary, H; Gulik, A; Dedieu, J C; Desmaële, D; d'Angelo, J; Müller, R H et al. · Biomaterials · 1999

basic_science · Level V

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Abstract

The in vitro protein-rejecting properties of PEG-coated polyalkylcyanoacrylate (PACA) nanoparticles were for the first time visualized after freeze-fracture of the nanoparticles pre-incubated with fibrinogen as a model blood protein. The reduced protein association to the nanoparticles was evidenced also by two-dimensional PAGE after incubation of the nanoparticles with human plasma. In vivo experiments showed the 'stealth' long-circulating properties of the PEGylated nanoparticles after intravenous administration to mice. Thus, the images obtained after nanoparticle-protein incubation were predictive of the behavior observed in vivo. In conclusion, freeze-fracture analysis represents a novel and original qualitative approach to investigate the interactions between proteins and particulate systems.

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