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Broad-spectrum non-toxic antiviral nanoparticles with a virucidal inhibition mechanism

Authors :
Cagno, Valeria
Andreozzi, Patrizia
D’Alicarnasso, Marco
Jacob Silva, Paulo
Mueller, Marie
Galloux, Marie
Le Goffic, Ronan
Jones, Samuel T.
Vallino, Marta
Hodek, Jan
Weber, Jan
Sen, Soumyo
Janeček, Emma-Rose
Bekdemir, Ahmet
Sanavio, Barbara
Martinelli, Chiara
Donalisio, Manuela
Rameix Welti, Marie-Anne
Eleouet, Jean-Francois
Han, Yanxiao
Kaiser, Laurent
Vukovic, Lela
Tapparel, Caroline
Král, Petr
Krol, Silke
Lembo, David
Stellacci, Francesco
Source :
Nature Materials; February 2018, Vol. 17 Issue: 2 p195-203, 9p
Publication Year :
2018

Abstract

Viral infections kill millions yearly. Available antiviral drugs are virus-specific and active against a limited panel of human pathogens. There are broad-spectrum substances that prevent the first step of virus–cell interaction by mimicking heparan sulfate proteoglycans (HSPG), the highly conserved target of viral attachment ligands (VALs). The reversible binding mechanism prevents their use as a drug, because, upon dilution, the inhibition is lost. Known VALs are made of closely packed repeating units, but the aforementioned substances are able to bind only a few of them. We designed antiviral nanoparticles with long and flexible linkers mimicking HSPG, allowing for effective viral association with a binding that we simulate to be strong and multivalent to the VAL repeating units, generating forces (∼190 pN) that eventually lead to irreversible viral deformation. Virucidal assays, electron microscopy images, and molecular dynamics simulations support the proposed mechanism. These particles show no cytotoxicity, and in vitronanomolar irreversible activity against herpes simplex virus (HSV), human papilloma virus, respiratory syncytial virus (RSV), dengue and lenti virus. They are active ex vivoin human cervicovaginal histocultures infected by HSV-2 and in vivoin mice infected with RSV.

Details

Language :
English
ISSN :
14761122 and 14764660
Volume :
17
Issue :
2
Database :
Supplemental Index
Journal :
Nature Materials
Publication Type :
Periodical
Accession number :
ejs44517807
Full Text :
https://doi.org/10.1038/nmat5053