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A Technique to Functionalize and Self-assemble Macroscopic Nanoparticle-ligand Monolayer Films onto Template-free Substrates
Published on: May 9, 2014
Formulation of highly functionalizable DNA nanoparticles based on 1,2-dithiolane derivatives
Coralie Charrat1, Anaïs Biscotti, Guilhem Godeau
1Institut de Chimie de Nice, équipe Molécules Bioactives (Vectorisation & Diagnostic), CNRS UMR 7272, Université de Nice-Sophia Antipolis, Faculté des Sciences, 06108 Nice Cedex 2 (France).
Abstract:
We describe the formulation of synthetic virus models based on ionic compounds bearing the polymerizable 1,2-dithiolane moiety. First, cationic amphiphiles containing the polymeric inducer were prepared and used to efficiently condense a DNA plasmid (pDNA) into a highly monodisperse population of small polymeric cationic DNA nanoparticles (NPs; Dh ∼100 nm). These nonspecific cationic particles were then functionalized with anionic PEGylated conjugates, also based on the 1,2-dithiolane motifs, in order to produce stable and fully dispersible stealth DNA nanoparticles. Our results show that both ionic interactions and polymerization based on the 1,2-dithiolane pattern occur and that they produce highly functionalizable nonviral DNA NPs.

