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Clinical features of Nipah virus encephalitis among pig farmers in Malaysia |
Goh |
2000 |
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Clinical Manifestations of Nipah Virus-Infected Patients Who Presented to the Emergency Department During an Outbreak in Kerala State in India, May 2018. Clinical infectious diseases : an official publication of the Infectious Diseases Society of America. 2020;71(1) |
Chandni |
2020 |
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PMID 40253778
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Encephalitis-predominant Nipah virus outbreaks in Kerala, India during 2024 |
Sahay |
2025 |
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Epidemiology, clinical characteristics, and genetic diversity of Nipah virus strains from Bangladesh: 2016–2023 |
Satter |
2025 |
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A morbillivirus that caused fatal disease in horses and humans |
Murray |
1995 |
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Infection of humans and horses by a newly described morbillivirus |
Selvey |
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PMID 9815409
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Outbreak of Severe Respiratory Disease in Humans and Horses Due to a Previously Unrecognized Paramyxovirus |
Selvey |
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PMID 29643201
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PMID 39714175
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Spengler |
2025 |
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Nipah virus edits its P gene at high frequency to express the V and W proteins |
Kulkarni |
2009 |
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Nipah virus V and W proteins have a common STAT1-binding domain yet inhibit STAT1 activation from the cytoplasmic and nuclear compartments, respectively |
Shaw |
2004 |
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Nuclear localization of the Nipah virus W protein allows for inhibition of both virus- and toll-like receptor 3-triggered signaling pathways |
Shaw |
2005 |
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Nipah virus sequesters inactive STAT1 in the nucleus via a P gene-encoded mechanism |
Ciancanelli |
2009 |
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Dissociation of paramyxovirus interferon evasion activities: universal and virus-specific requirements for conserved V protein amino acids in MDA5 interference |
Ramachandran |
2010 |
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The V proteins of paramyxoviruses bind the IFN-inducible RNA helicase, mda-5, and inhibit its activation of the IFN-beta promoter |
Andrejeva |
2004 |
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The immunomodulating V and W proteins of Nipah virus determine disease course |
Satterfield |
2015 |
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Antagonism of STAT1 by Nipah virus P gene products modulates disease course but not lethal outcome in the ferret model |
Satterfield |
2019 |
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PMID 27147733
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Nipah Virus C and W Proteins Contribute to Respiratory Disease in Ferrets |
Satterfield |
2016 |
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PMID 20856799
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The nonstructural proteins of Nipah virus play a key role in pathogenicity in experimentally infected animals |
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Cedar virus: a novel Henipavirus isolated from Australian bats |
Marsh |
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PMID 26526590
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The non-pathogenic Henipavirus Cedar paramyxovirus phosphoprotein has a compromised ability to target STAT1 and STAT2 |
Lieu |
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Isolation of Hendra virus from pteropid bats: a natural reservoir of Hendra virus |
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Pathogen spillover driven by rapid changes in bat ecology. |
Eby |
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Isolation of Nipah virus from Malaysian Island flying-foxes |
Chua |
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Spatial Association Between a Nipah Virus Outbreak in India and Nipah Virus Infection in Pteropus Bats. Clinical infectious diseases : an official publication of the Infectious Diseases Society of America. 2019;69(2) |
Mourya |
2019 |
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Detection of Nipah virus RNA in fruit bat (Pteropus giganteus) from India |
Yadav |
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Circulation of Nipah virus in Pteropus giganteus bats in northeast region of India, 2015 |
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Henipavirus infection in fruit bats (Pteropus giganteus), India |
Epstein |
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Isolation and Full-Genome Characterization of Nipah Viruses from Bats, Bangladesh |
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PMID 38682164
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The Genetic Diversity of Nipah Virus Across Spatial Scales |
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PMID 21940413
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Co-circulation of diverse paramyxoviruses in an urban African fruit bat population |
Baker |
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Discovery and Genomic Characterization of a Novel Henipavirus, Angavokely Virus, from Fruit Bats in Madagascar |
Madera |
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Henipavirus RNA in African bats |
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Transmission studies of Hendra virus (equine morbillivirus) in fruit bats, horses and cats |
Williamson |
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PMID 10684689
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Experimental hendra virus infection in pregnant guinea-pigs and fruit Bats (Pteropus poliocephalus) |
Williamson |
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In OmniVira
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Halpin |
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PMID 17498518
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Experimental Nipah virus infection in pteropid bats (Pteropus poliocephalus) |
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PMID 32226041
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Acute experimental infection of bats and ferrets with Hendra virus: Insights into the early host response of the reservoir host and susceptible model species |
Woon |
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Routes of Hendra Virus Excretion in Naturally-Infected Flying-Foxes: Implications for Viral Transmission and Spillover Risk |
Edson |
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PMID 26060997
In OmniVira
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Natural Hendra Virus Infection in Flying-Foxes - Tissue Tropism and Risk Factors. |
Goldspink |
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Time of year, age class and body condition predict Hendra virus infection in Australian black flying foxes (Pteropus alecto) |
Edson |
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PMID 41863545
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Natural Hendra Virus Infections in Captive Australian Black Flying Foxes, Queensland, Australia |
Boyd |
2026 |
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Jamaican fruit bats’ competence for Ebola but not Marburg virus is driven by intrinsic differences |
van Tol |
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PMID 31527796
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Bat influenza viruses transmit among bats but are poorly adapted to non-bat species |
Ciminski |
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Deciphering bat influenza H18N11 infection dynamics in male Jamaican fruit bats on a single-cell level |
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Rousettus aegyptiacus Bats Do Not Support Productive Nipah Virus Replication. |
Seifert |
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Ephrin B1 and B2 Mediate Cedar Virus Entry into Egyptian Fruit Bat Cells |
Lenhard |
2025 |
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Rousettus aegyptiacus Fruit Bats Do Not Support Productive Replication of Cedar Virus upon Experimental Challenge. viruses. 2024;16(9) |
Mohl |
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Spatio-temporal dynamics of Hendra virus in Australia reveal stable maintenance of diverse viral clades among Pteropus bats |
Yinda |
2026 |