| Literature DB >> 31973422 |
Giulia Tuci1, Lapo Luconi1, Andrea Rossin1, Francesco Baldini2, Stefano Cicchi3, Sara Tombelli2, Cosimo Trono2, Ambra Giannetti2, Ilse Manet4, Stefano Fedeli3, Alberto Brandi3, Giuliano Giambastiani1,5.
Abstract
Efforts have been made in recent years to develop novel functionalisation protocols aimed at imparting multimodality and improved properties to complex carbon-based nanostructures. The incorporation of cleavable bonds to the nanomaterial surface for the controlled release (or exchange) of specific molecules under appropriate chemical and biological settings is relatively unexplored. The design and synthesis of a hetero-bifunctional linker joining a "cleavable" disulfide moiety for the covalent anchoring of a wide range of thiol end-capped (bio)molecules and a "clickable" terminal acetylene group is described. The strategy is based on the well-established copper-mediated acetylene-azide coupling reaction between the acetylene linker and single-walled carbon nanotubes decorated with phenylazido pendant arms. As a result, easily "post-derivatisable" and traceable nanostructured platforms containing a linking group potentially available for a wide range of biological probes are prepared and completely characterised.Entities:
Keywords: carbon; click chemistry; drug delivery; nanotubes; synthesis design
Year: 2015 PMID: 31973422 DOI: 10.1002/cplu.201402391
Source DB: PubMed Journal: Chempluschem ISSN: 2192-6506 Impact factor: 2.863