Matches in SemOpenAlex for { <https://semopenalex.org/work/W2032391782> ?p ?o ?g. }
Showing items 1 to 75 of
75
with 100 items per page.
- W2032391782 endingPage "272" @default.
- W2032391782 startingPage "269" @default.
- W2032391782 abstract "Future MicrobiologyVol. 9, No. 3 EditorialDo nonhuman primate or bat adenoviruses pose a risk for human health?Mária Benkő, Balázs Harrach & Eric J KremerMária BenkőInstitute for Veterinary Medical Research, Centre for Agricultural Research, Hungarian Academy of Sciences, H-1581 Budapest, HungarySearch for more papers by this author, Balázs HarrachInstitute for Veterinary Medical Research, Centre for Agricultural Research, Hungarian Academy of Sciences, H-1581 Budapest, HungarySearch for more papers by this author & Eric J Kremer* Author for correspondence: E-mail Address: eric.kremer@igmm.cnrs.frInstitut de Génétique Moléculaire de Montpellier, CNRS 5535, Montpellier, FranceUniversité de Montpellier I, Montpellier, FranceUniversité de Montpellier II, Montpellier, FranceSearch for more papers by this authorPublished Online:24 Apr 2014https://doi.org/10.2217/fmb.13.170AboutSectionsView ArticleView Full TextPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsPermissionsReprints ShareShare onFacebookTwitterLinkedInReddit View articleKeywords: adenovirusbatchimpanzeehost switchingmonkeyzoonosisReferences1 Horwitz M. Adenoviruses. In: Fields Virology. Fields B, Knipe D (Eds). Raven Press, PA, USA, 2149–2171 (2001).Google Scholar2 Available adenovirus sequences. ∼www.vmri.hu/∼harrach/ADENOSEQ.HTMGoogle Scholar3 Harrach B, Benkő M, Both G. Family Adenoviridae. In: Virus Taxonomy. King A, Adams M, Carstens E, Lefkowitz EJ (Eds). Elsevier, Oxford, UK, 125–141 (2011).Google Scholar4 Arnberg N. Adenovirus receptors: implications for targeting of viral vectors. Trends Pharmacol. Sci. 33(8), 442–448 (2012).Crossref, Medline, CAS, Google Scholar5 Leen AM, Rooney CM. Adenovirus as an emerging pathogen in immunocompromised patients. Br. J. Haematol. 128(2), 135–144 (2005).Crossref, Medline, CAS, Google Scholar6 Li Y, Ge X, Zhang H et al. Host range, prevalence, and genetic diversity of adenoviruses in bats. J. Virol. 84(8), 3889–3897 (2010).Crossref, Medline, CAS, Google Scholar7 Benson SD, Bamford JK, Bamford DH, Burnett RM. Does common architecture reveal a viral lineage spanning all three domains of life? Mol. Cell 16(5), 673–685 (2004).Crossref, Medline, CAS, Google Scholar8 Philippa JD, Leighton FA, Daoust PY et al. Antibodies to selected pathogens in free-ranging terrestrial carnivores and marine mammals in Canada. Vet. Rec. 155(5), 135–140 (2004).Crossref, Medline, CAS, Google Scholar9 Janoska M, Vidovszky M, Molnar V, Liptovszky M, Harrach B, Benko M. Novel adenoviruses and herpesviruses detected in bats. Vet. J. 189(1), 118–121 (2010).Crossref, Medline, Google Scholar10 Kohl C, Vidovszky MZ, Muhldorfer K et al. Genome analysis of bat adenovirus 2: indications of interspecies transmission. J. Virol. 86(3), 1888–1892 (2012).Crossref, Medline, CAS, Google Scholar11 Xiang Z, Li Y, Cun A et al. Chimpanzee adenovirus antibodies in humans, Sub-Saharan Africa. Emerg. Infect. Dis. 12(10), 1596–1599 (2006).Crossref, Medline, CAS, Google Scholar12 Wevers D, Metzger S, Babweteera F et al. Novel adenoviruses in wild primates: a high level of genetic diversity and evidence of zoonotic transmissions. J. Virol. 85(20), 10774–10784 (2011).Crossref, Medline, CAS, Google Scholar13 Chen EC, Yagi S, Kelly KR et al. Cross-species transmission of a novel adenovirus associated with a fulminant pneumonia outbreak in a new world monkey colony. PLoS Pathog. 7(7), e1002155 (2011).Crossref, Medline, CAS, Google Scholar14 Chiu CY, Yagi S, Lu X et al. A novel adenovirus species associated with an acute respiratory outbreak in a baboon colony and evidence of coincident human infection. mBio 4(2), e00084 (2013).Crossref, Medline, Google Scholar15 Yu G, Yagi S, Carrion R Jr et al. Experimental cross-species infection of common marmosets by titi monkey adenovirus. PLoS ONE 8(7), e68558 (2013).Crossref, Medline, CAS, Google Scholar16 Roy S, Vandenberghe LH, Kryazhimskiy S et al. Isolation and characterization of adenoviruses persistently shed from the gastrointestinal tract of non-human primates. PLoS Pathog. 5(7), e1000503 (2009).Crossref, Medline, Google ScholarFiguresReferencesRelatedDetailsCited ByWhile We Endure This Pandemic, What New Respiratory Virus Threats Are We Missing?12 February 2021 | Open Forum Infectious Diseases, Vol. 8, No. 3Sialic Acid Receptors: The Key to Solving the Enigma of Zoonotic Virus Spillover8 February 2021 | Viruses, Vol. 13, No. 2The FDA-Approved Drug Nelfinavir Inhibits Lytic Cell-Free but Not Cell-Associated Nonlytic Transmission of Human AdenovirusAntimicrobial Agents and Chemotherapy, Vol. 64, No. 9Adenovirus Infections in African Humans and Wild Non-Human Primates: Great Diversity and Cross-Species Transmission18 June 2020 | Viruses, Vol. 12, No. 6Two novel adenoviruses found in Cave Myotis bats (Myotis velifer) in Oklahoma3 December 2019 | Virus Genes, Vol. 56, No. 1A Mini Review of the Zoonotic Threat Potential of Influenza Viruses, Coronaviruses, Adenoviruses, and Enteroviruses9 April 2018 | Frontiers in Public Health, Vol. 6A metagenomic viral discovery approach identifies potential zoonotic and novel mammalian viruses in Neoromicia bats within South Africa26 March 2018 | PLOS ONE, Vol. 13, No. 3Characterization of a Novel Bat Adenovirus Isolated from Straw-Colored Fruit Bat (Eidolon helvum)4 December 2017 | Viruses, Vol. 9, No. 12Genome analysis of four Old World monkey adenoviruses supports the proposed species classification of primate adenoviruses and reveals signs of possible homologous recombinationJournal of General Virology, Vol. 97, No. 7Detection of novel adenoviruses in fecal specimens from rodents and shrews in southern China15 March 2016 | Virus Genes, Vol. 52, No. 3Ebola virus vaccine: benefit and risks of adenovirus-based vectors31 August 2015 | Expert Review of Vaccines, Vol. 14, No. 11Adenovirus and Herpesvirus Diversity in Free-Ranging Great Apes in the Sangha Region of the Republic of Congo17 March 2015 | PLOS ONE, Vol. 10, No. 3 Vol. 9, No. 3 Follow us on social media for the latest updates Metrics Downloaded 72 times History Published online 24 April 2014 Published in print March 2014 Information© Future Medicine LtdKeywordsadenovirusbatchimpanzeehost switchingmonkeyzoonosisFinancial & competing interests disclosureThis work was supported by grants from the European Commission through the 7th Framework Programs: ADVance (#290002) to M Benkő, B Harrach and EJ Kremer; and BrainCAV (#222992) to EJ Kremer. This work was also supported by the Region Languedoc Roussillon, the Fondation de France, Vaincre les Maladies Lysosomales, Agence National de la Recherche and the Association Française contre les Myopathies to EJ Kremer; and grant OTKA NN107632 provided by Hungarian Scientific Research Fund to B Harrach and M Benk. The authors have no other relevant affiliations or financial involvement with any organization or entity with a financial interest in or financial conflict with the subject matter or materials discussed in the manuscript apart from those disclosed.No writing assistance was used in the production of this manuscript.PDF download" @default.
- W2032391782 created "2016-06-24" @default.
- W2032391782 creator A5018177526 @default.
- W2032391782 creator A5019373947 @default.
- W2032391782 creator A5028016854 @default.
- W2032391782 date "2014-03-01" @default.
- W2032391782 modified "2023-10-18" @default.
- W2032391782 title "Do nonhuman primate or bat adenoviruses pose a risk for human health?" @default.
- W2032391782 cites W1980010932 @default.
- W2032391782 cites W1980318675 @default.
- W2032391782 cites W1997609917 @default.
- W2032391782 cites W2043373884 @default.
- W2032391782 cites W2044678933 @default.
- W2032391782 cites W2046375521 @default.
- W2032391782 cites W2073975144 @default.
- W2032391782 cites W2078328390 @default.
- W2032391782 cites W2083060414 @default.
- W2032391782 cites W2086295331 @default.
- W2032391782 cites W2107182480 @default.
- W2032391782 cites W2111875244 @default.
- W2032391782 cites W2135241378 @default.
- W2032391782 doi "https://doi.org/10.2217/fmb.13.170" @default.
- W2032391782 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24762301" @default.
- W2032391782 hasPublicationYear "2014" @default.
- W2032391782 type Work @default.
- W2032391782 sameAs 2032391782 @default.
- W2032391782 citedByCount "14" @default.
- W2032391782 countsByYear W20323917822015 @default.
- W2032391782 countsByYear W20323917822016 @default.
- W2032391782 countsByYear W20323917822017 @default.
- W2032391782 countsByYear W20323917822018 @default.
- W2032391782 countsByYear W20323917822019 @default.
- W2032391782 countsByYear W20323917822020 @default.
- W2032391782 countsByYear W20323917822021 @default.
- W2032391782 crossrefType "journal-article" @default.
- W2032391782 hasAuthorship W2032391782A5018177526 @default.
- W2032391782 hasAuthorship W2032391782A5019373947 @default.
- W2032391782 hasAuthorship W2032391782A5028016854 @default.
- W2032391782 hasConcept C159047783 @default.
- W2032391782 hasConcept C161191863 @default.
- W2032391782 hasConcept C2779473830 @default.
- W2032391782 hasConcept C41008148 @default.
- W2032391782 hasConcept C55493867 @default.
- W2032391782 hasConcept C71924100 @default.
- W2032391782 hasConcept C86803240 @default.
- W2032391782 hasConceptScore W2032391782C159047783 @default.
- W2032391782 hasConceptScore W2032391782C161191863 @default.
- W2032391782 hasConceptScore W2032391782C2779473830 @default.
- W2032391782 hasConceptScore W2032391782C41008148 @default.
- W2032391782 hasConceptScore W2032391782C55493867 @default.
- W2032391782 hasConceptScore W2032391782C71924100 @default.
- W2032391782 hasConceptScore W2032391782C86803240 @default.
- W2032391782 hasIssue "3" @default.
- W2032391782 hasLocation W20323917821 @default.
- W2032391782 hasLocation W20323917822 @default.
- W2032391782 hasLocation W20323917823 @default.
- W2032391782 hasOpenAccess W2032391782 @default.
- W2032391782 hasPrimaryLocation W20323917821 @default.
- W2032391782 hasRelatedWork W1506200166 @default.
- W2032391782 hasRelatedWork W1995515455 @default.
- W2032391782 hasRelatedWork W2048182022 @default.
- W2032391782 hasRelatedWork W2080531066 @default.
- W2032391782 hasRelatedWork W2604872355 @default.
- W2032391782 hasRelatedWork W2748952813 @default.
- W2032391782 hasRelatedWork W2899084033 @default.
- W2032391782 hasRelatedWork W3031052312 @default.
- W2032391782 hasRelatedWork W3032375762 @default.
- W2032391782 hasRelatedWork W3108674512 @default.
- W2032391782 hasVolume "9" @default.
- W2032391782 isParatext "false" @default.
- W2032391782 isRetracted "false" @default.
- W2032391782 magId "2032391782" @default.
- W2032391782 workType "article" @default.