z-logo
Premium
Amphiphilic Polyphenylene Dendron Conjugates for Surface Remodeling of Adenovirus 5
Author(s) -
Wagner Jessica,
Li Longjie,
Simon Johanna,
Krutzke Lea,
Landfester Katharina,
Mailänder Volker,
Müllen Klaus,
Ng David Y. W.,
Wu Yuzhou,
Weil Tanja
Publication year - 2020
Publication title -
angewandte chemie
Language(s) - English
Resource type - Journals
eISSN - 1521-3757
pISSN - 0044-8249
DOI - 10.1002/ange.201913708
Subject(s) - dendrimer , amphiphile , surface modification , transduction (biophysics) , gene delivery , chemistry , conjugate , biophysics , combinatorial chemistry , copolymer , materials science , genetic enhancement , polymer chemistry , gene , biochemistry , polymer , biology , organic chemistry , mathematical analysis , mathematics
Amphiphilic surface groups play an important role in many biological processes. The synthesis of amphiphilic polyphenylene dendrimer branches (dendrons), providing alternating hydrophilic and lipophilic surface groups and one reactive ethynyl group at the core is reported. The amphiphilic surface groups serve as biorecognition units that bind to the surface of adenovirus 5 (Ad5), which is a common vector in gene therapy. The Ad5/dendron complexes showed high gene transduction efficiencies in coxsackie‐adenovirus receptor (CAR)‐negative cells. Moreover, the dendrons offer incorporation of new functions at the dendron core by in situ post‐modifications, even when bound to the Ad5 surface. Surfaces coated with these dendrons were analyzed for their blood‐protein binding capacity, which is essential to predict their performance in the blood stream. A new platform for introducing bioactive groups to the Ad5 surface without chemically modifying the virus particles is provided.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here