Animal challenge models of henipavirus infection and pathogenesis.
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Comparison of the pathogenicity of Nipah virus isolates from Bangladesh and Malaysia in the Syrian hamsterEfficient reverse genetics reveals genetic determinants of budding and fusogenic differences between Nipah and Hendra viruses and enables real-time monitoring of viral spread in small animal models of henipavirus infection.Hendra virus and Nipah virus animal vaccines.Loss in lung volume and changes in the immune response demonstrate disease progression in African green monkeys infected by small-particle aerosol and intratracheal exposure to Nipah virus.Climatic suitability influences species specific abundance patterns of Australian flying foxes and risk of Hendra virus spillover.Subclinical infection without encephalitis in mice following intranasal exposure to Nipah virus-Malaysia and Nipah virus-BangladeshA Hendra virus G glycoprotein subunit vaccine protects African green monkeys from Nipah virus challenge.Evidence for henipavirus spillover into human populations in Africa.Serological evidence of henipavirus exposure in cattle, goats and pigs in Bangladesh.Reservoir host immune responses to emerging zoonotic viruses.A treatment for and vaccine against the deadly Hendra and Nipah virusesTherapeutic treatment of Nipah virus infection in nonhuman primates with a neutralizing human monoclonal antibody.The immunomodulating V and W proteins of Nipah virus determine disease course.Nipah virus envelope-pseudotyped lentiviruses efficiently target ephrinB2-positive stem cell populations in vitro and bypass the liver sink when administered in vivoPathogenic Differences between Nipah Virus Bangladesh and Malaysia Strains in Primates: Implications for Antibody Therapy.Paramyxovirus activation and inhibition of innate immune responses.Paramyxovirus evasion of innate immunity: Diverse strategies for common targets.Multiple Strategies Reveal a Bidentate Interaction between the Nipah Virus Attachment and Fusion Glycoproteins.Novel Functions of Hendra Virus G N-Glycans and Comparisons to Nipah Virus.Evaluation of transmission risks associated with in vivo replication of several high containment pathogens in a biosafety level 4 laboratory.Expression and purification of the matrix protein of Nipah virus in baculovirus insect cell system.The equine Hendra virus vaccine remains a highly effective preventative measure against infection in horses and humans: 'The imperative to develop a human vaccine for the Hendra virus in Australia'.
P2860
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P2860
Animal challenge models of henipavirus infection and pathogenesis.
description
article científic
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article scientifique
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articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
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artículo científico
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name
Animal challenge models of henipavirus infection and pathogenesis.
@en
type
label
Animal challenge models of henipavirus infection and pathogenesis.
@en
altLabel
Animal challenge models of henipavirus infection and pathogenesis
@en
prefLabel
Animal challenge models of henipavirus infection and pathogenesis.
@en
P356
P1476
Animal challenge models of henipavirus infection and pathogenesis.
@en
P2093
Christopher C Broder
P304
P356
10.1007/82_2012_208
P407
P577
2012-01-01T00:00:00Z