PEGylation of nanosubstrates (Titania) with multifunctional reagents: At the crossroads between nanoparticles and nanocomposites

Tania Kotsokechagia, Noha M. Zaki, Karen Syres, Piero De Leonardis, Andrew Thomas, Francesco Cellesi, Nicola Tirelli

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Titania (anatase) nanoparticles were successfully PEGylated through the use of catechol (dopamine)-terminated PEG derivatives. The resulting materials were characterized by excellent stability at neutral pH and extremely low toxicity (phagocytic and nonphagocytic cell lines). In particular, we focused on the comparison between mono- and bis-catechol PEGs. Due to the double terminal anchorage on the titania surface, bis-catechol ligands can produce chains differing from classical monoanchored PEG in conformation (horseshoe-shaped vs brush) and thus the possibility of interactions with biomolecules. At the same time, less than quantitative catechol binding may lead to the presence of dangling chains with unbound catechols which can polymerize and eventually produce PEG/titania nanocomposite colloids. Our results on double-functional PEG2000 show the latter to be the case. Pluronic F127 was also used as a bifunctional ligand, leading to nanocomposite aggregates with an even larger organic content. © 2012 American Chemical Society.
    Original languageEnglish
    Pages (from-to)11490-11501
    Number of pages11
    JournalLangmuir
    Volume28
    Issue number31
    DOIs
    Publication statusPublished - 7 Aug 2012

    Fingerprint

    Dive into the research topics of 'PEGylation of nanosubstrates (Titania) with multifunctional reagents: At the crossroads between nanoparticles and nanocomposites'. Together they form a unique fingerprint.

    Cite this