Cargando…

Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor

Cyclodextrins and cyclodextrin derivatives were demonstrated to improve the antiviral potency of numerous drugs, but also to be endowed with intrinsic antiviral action. They are suitable building blocks for the synthesis of functionalized polymer structures with potential antiviral activity. Accordi...

Descripción completa

Detalles Bibliográficos
Autores principales: Francese, Rachele, Cecone, Claudio, Costantino, Matteo, Hoti, Gjylije, Bracco, Pierangiola, Lembo, David, Trotta, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369026/
https://www.ncbi.nlm.nih.gov/pubmed/35955832
http://dx.doi.org/10.3390/ijms23158701
_version_ 1784766330270908416
author Francese, Rachele
Cecone, Claudio
Costantino, Matteo
Hoti, Gjylije
Bracco, Pierangiola
Lembo, David
Trotta, Francesco
author_facet Francese, Rachele
Cecone, Claudio
Costantino, Matteo
Hoti, Gjylije
Bracco, Pierangiola
Lembo, David
Trotta, Francesco
author_sort Francese, Rachele
collection PubMed
description Cyclodextrins and cyclodextrin derivatives were demonstrated to improve the antiviral potency of numerous drugs, but also to be endowed with intrinsic antiviral action. They are suitable building blocks for the synthesis of functionalized polymer structures with potential antiviral activity. Accordingly, four water-soluble hyper-branched beta cyclodextrin (βCD)-based anionic polymers were screened against herpes simplex virus (HSV-2), respiratory syncytial virus (RSV), rotavirus (HRoV), and influenza virus (FluVA). They were characterized by FTIR-ATR, TGA, elemental analyses, zeta-potential measurements, and potentiometric titrations, while the antiviral activity was investigated with specific in vitro assays. The polymer with the highest negative charge, pyromellitic dianhydride-linked polymer (P_PMDA), showed significant antiviral action against RSV and HSV-2, by inactivating RSV free particles and by altering HSV-2 binding to the cell. The polymer fraction with the highest molecular weight showed the strongest antiviral activity and both P_PMDA and its active fractions were not toxic for cells. Our results suggest that the polymer virucidal activity against RSV can be exploited to produce new antiviral materials to counteract the virus dissemination through the air or direct contact. Additionally, the strong HSV-2 binding inhibition along with the water solubility of P_PMDA and the acyclovir complexation potential of βCD are attractive features for developing new therapeutic topical options against genital HSV-2 infection.
format Online
Article
Text
id pubmed-9369026
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93690262022-08-12 Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor Francese, Rachele Cecone, Claudio Costantino, Matteo Hoti, Gjylije Bracco, Pierangiola Lembo, David Trotta, Francesco Int J Mol Sci Article Cyclodextrins and cyclodextrin derivatives were demonstrated to improve the antiviral potency of numerous drugs, but also to be endowed with intrinsic antiviral action. They are suitable building blocks for the synthesis of functionalized polymer structures with potential antiviral activity. Accordingly, four water-soluble hyper-branched beta cyclodextrin (βCD)-based anionic polymers were screened against herpes simplex virus (HSV-2), respiratory syncytial virus (RSV), rotavirus (HRoV), and influenza virus (FluVA). They were characterized by FTIR-ATR, TGA, elemental analyses, zeta-potential measurements, and potentiometric titrations, while the antiviral activity was investigated with specific in vitro assays. The polymer with the highest negative charge, pyromellitic dianhydride-linked polymer (P_PMDA), showed significant antiviral action against RSV and HSV-2, by inactivating RSV free particles and by altering HSV-2 binding to the cell. The polymer fraction with the highest molecular weight showed the strongest antiviral activity and both P_PMDA and its active fractions were not toxic for cells. Our results suggest that the polymer virucidal activity against RSV can be exploited to produce new antiviral materials to counteract the virus dissemination through the air or direct contact. Additionally, the strong HSV-2 binding inhibition along with the water solubility of P_PMDA and the acyclovir complexation potential of βCD are attractive features for developing new therapeutic topical options against genital HSV-2 infection. MDPI 2022-08-04 /pmc/articles/PMC9369026/ /pubmed/35955832 http://dx.doi.org/10.3390/ijms23158701 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Francese, Rachele
Cecone, Claudio
Costantino, Matteo
Hoti, Gjylije
Bracco, Pierangiola
Lembo, David
Trotta, Francesco
Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title_full Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title_fullStr Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title_full_unstemmed Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title_short Identification of a βCD-Based Hyper-Branched Negatively Charged Polymer as HSV-2 and RSV Inhibitor
title_sort identification of a βcd-based hyper-branched negatively charged polymer as hsv-2 and rsv inhibitor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369026/
https://www.ncbi.nlm.nih.gov/pubmed/35955832
http://dx.doi.org/10.3390/ijms23158701
work_keys_str_mv AT franceserachele identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT ceconeclaudio identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT costantinomatteo identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT hotigjylije identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT braccopierangiola identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT lembodavid identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor
AT trottafrancesco identificationofabcdbasedhyperbranchednegativelychargedpolymerashsv2andrsvinhibitor