Cargando…
Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters
Infections of immunocompromised patients with human adenoviruses (hAd) can develop into life-threatening conditions, whereas drugs with anti-adenoviral efficiency are not clinically approved and have limited efficacy. Small double-stranded RNAs that induce RNAi represent a new class of promising ant...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society of Gene & Cell Therapy
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5537171/ https://www.ncbi.nlm.nih.gov/pubmed/28918031 http://dx.doi.org/10.1016/j.omtn.2017.07.002 |
_version_ | 1783254115819716608 |
---|---|
author | Schaar, Katrin Geisler, Anja Kraus, Milena Pinkert, Sandra Pryshliak, Markian Spencer, Jacqueline F. Tollefson, Ann E. Ying, Baoling Kurreck, Jens Wold, William S. Klopfleisch, Robert Toth, Karoly Fechner, Henry |
author_facet | Schaar, Katrin Geisler, Anja Kraus, Milena Pinkert, Sandra Pryshliak, Markian Spencer, Jacqueline F. Tollefson, Ann E. Ying, Baoling Kurreck, Jens Wold, William S. Klopfleisch, Robert Toth, Karoly Fechner, Henry |
author_sort | Schaar, Katrin |
collection | PubMed |
description | Infections of immunocompromised patients with human adenoviruses (hAd) can develop into life-threatening conditions, whereas drugs with anti-adenoviral efficiency are not clinically approved and have limited efficacy. Small double-stranded RNAs that induce RNAi represent a new class of promising anti-adenoviral therapeutics. However, as yet, their efficiency to treat hAd5 infections has only been investigated in vitro. In this study, we analyzed artificial microRNAs (amiRs) delivered by self-complementary adeno-associated virus (scAAV) vectors for treatment of hAd5 infections in immunosuppressed Syrian hamsters. In vitro evaluation of amiRs targeting the E1A, pTP, IVa2, and hexon genes of hAd5 revealed that two scAAV vectors containing three copies of amiR-pTP and three copies of amiR-E1A, or six copies of amiR-pTP, efficiently inhibited hAd5 replication and improved the viability of hAd5-infected cells. Prophylactic application of amiR-pTP/amiR-E1A- and amiR-pTP-expressing scAAV9 vectors, respectively, to immunosuppressed Syrian hamsters resulted in the reduction of hAd5 levels in the liver of up to two orders of magnitude and in reduction of liver damage. Concomitant application of the vectors also resulted in a decrease of hepatic hAd5 infection. No side effects were observed. These data demonstrate anti-adenoviral RNAi as a promising new approach to combat hAd5 infection. |
format | Online Article Text |
id | pubmed-5537171 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | American Society of Gene & Cell Therapy |
record_format | MEDLINE/PubMed |
spelling | pubmed-55371712017-08-08 Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters Schaar, Katrin Geisler, Anja Kraus, Milena Pinkert, Sandra Pryshliak, Markian Spencer, Jacqueline F. Tollefson, Ann E. Ying, Baoling Kurreck, Jens Wold, William S. Klopfleisch, Robert Toth, Karoly Fechner, Henry Mol Ther Nucleic Acids Original Article Infections of immunocompromised patients with human adenoviruses (hAd) can develop into life-threatening conditions, whereas drugs with anti-adenoviral efficiency are not clinically approved and have limited efficacy. Small double-stranded RNAs that induce RNAi represent a new class of promising anti-adenoviral therapeutics. However, as yet, their efficiency to treat hAd5 infections has only been investigated in vitro. In this study, we analyzed artificial microRNAs (amiRs) delivered by self-complementary adeno-associated virus (scAAV) vectors for treatment of hAd5 infections in immunosuppressed Syrian hamsters. In vitro evaluation of amiRs targeting the E1A, pTP, IVa2, and hexon genes of hAd5 revealed that two scAAV vectors containing three copies of amiR-pTP and three copies of amiR-E1A, or six copies of amiR-pTP, efficiently inhibited hAd5 replication and improved the viability of hAd5-infected cells. Prophylactic application of amiR-pTP/amiR-E1A- and amiR-pTP-expressing scAAV9 vectors, respectively, to immunosuppressed Syrian hamsters resulted in the reduction of hAd5 levels in the liver of up to two orders of magnitude and in reduction of liver damage. Concomitant application of the vectors also resulted in a decrease of hepatic hAd5 infection. No side effects were observed. These data demonstrate anti-adenoviral RNAi as a promising new approach to combat hAd5 infection. American Society of Gene & Cell Therapy 2017-07-08 /pmc/articles/PMC5537171/ /pubmed/28918031 http://dx.doi.org/10.1016/j.omtn.2017.07.002 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Original Article Schaar, Katrin Geisler, Anja Kraus, Milena Pinkert, Sandra Pryshliak, Markian Spencer, Jacqueline F. Tollefson, Ann E. Ying, Baoling Kurreck, Jens Wold, William S. Klopfleisch, Robert Toth, Karoly Fechner, Henry Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title | Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title_full | Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title_fullStr | Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title_full_unstemmed | Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title_short | Anti-adenoviral Artificial MicroRNAs Expressed from AAV9 Vectors Inhibit Human Adenovirus Infection in Immunosuppressed Syrian Hamsters |
title_sort | anti-adenoviral artificial micrornas expressed from aav9 vectors inhibit human adenovirus infection in immunosuppressed syrian hamsters |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5537171/ https://www.ncbi.nlm.nih.gov/pubmed/28918031 http://dx.doi.org/10.1016/j.omtn.2017.07.002 |
work_keys_str_mv | AT schaarkatrin antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT geisleranja antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT krausmilena antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT pinkertsandra antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT pryshliakmarkian antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT spencerjacquelinef antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT tollefsonanne antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT yingbaoling antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT kurreckjens antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT woldwilliams antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT klopfleischrobert antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT tothkaroly antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters AT fechnerhenry antiadenoviralartificialmicrornasexpressedfromaav9vectorsinhibithumanadenovirusinfectioninimmunosuppressedsyrianhamsters |