|
PMID 17169393
|
2007 |
Grard |
2006 |
|
-
|
1986. Replication of flaviviruses, p 327–374 |
Brinton |
1986 |
|
PMID 36851477
|
2023. Mechanisms of neuroinvasion and neuropathogenesis by pathologic flaviviruses |
de Vries |
2023 |
|
PMID 8891541
|
1996. Family outbreak of alimentary tick-borne encephalitis in Slovakia associated with a natural focus of infection. Eur J Epidemiol 12:373–375 |
Kohl |
1996 |
|
PMID 19765917
|
2010. Zoonotic tick-borne flaviviruses |
Dobler |
2009 |
|
PMID 32695800
|
2020. Identifying environmental risk factors for louping ill virus seroprevalence in sheep and the potential to inform wildlife management policy. Front Vet Sci 7:377 |
Gilbert |
2020 |
|
PMID 24552787
|
2014. Louping ill virus: an endemic tick-borne disease of Great Britain |
Jeffries |
2014 |
|
PMID 31336624
|
2019. Exploring the reservoir hosts of tick-borne encephalitis virus |
Michelitsch |
2019 |
|
PMID 29691370
|
2018. A new subtype of eastern tick-borne encephalitis virus discovered in Qinghai-Tibet Plateau, China |
Dai |
2018 |
|
-
|
2018. Characteristics of the baikal subtype of tick-borne encephalitis virus circulating in eastern Siberia. Acta Biomed Sci 3:53–60 |
Kozlova |
2018 |
|
PMID 16814876
|
2006. Detection of Louping ill virus in clinical specimens from mammals and birds using TaqMan RT-PCR |
Marriott |
2006 |
|
-
|
2012 |
King |
2012 |
|
PMID 22490310
|
2012. Tick-borne encephalitis transmitted by unpasteurised cow milk in western Hungary, September to October 2011. Euro Surveill 17:20128 |
Caini |
2011 |
|
PMID 1237478
|
1975. Sheep milk-borne epidemic of tick-borne encephalitis in Slovakia. Intervirology 5:57–61 |
Gresíková |
1975 |
|
PMID 19861072
|
2009. Tick-borne encephalitis from eating goat cheese in a mountain region of Austria |
Holzmann |
2009 |
|
PMID 33676573
|
2021. Exploration of binary protein–protein interactions between tick-borne flaviviruses and Ixodes ricinus. Parasit Vectors 14:144 |
Lemasson |
2021 |
|
PMID 26931387
|
2016. Innate and adaptive immune responses to tick-borne flavivirus infection in sheep |
Mansfield |
2016 |
|
PMID 23868122
|
2013. Louping ill virus genome sequence derived from the spinal cord of an infected lamb. Genome Announc 1:4–5 |
Marston |
2013 |
|
PMID 1845834
|
1991. Genomic sequence of the structural proteins of louping III virus: comparative analysis with tick-borne encephalitis virus. Virology 180:411–415 |
Shiu |
1991 |
|
PMID 1753132
|
1991. Louping ill in man: a forgotten disease |
Davidson |
1991 |
|
PMID 29933625
|
2018. Tick-borne flaviviruses and the type I interferon response |
Lindqvist |
2018 |
|
-
|
2020. Tick borne viral zoonotic diseases: a review |
Patel |
2042 |
|
PMID 20970727
|
2010. What tick-borne encephalitis may look like: clinical signs and symptoms. Travel Med Infect Dis 8:246–250 |
Bogovic |
2010 |
|
PMID 25984517
|
2015. Tick-borne encephalitis: a review of epidemiology, clinical characteristics, and management. World J Clin Cases 3:430–441 |
Bogovic |
2015 |
|
PMID 30879988
|
2019. Host immunogenetics in tick-borne encephalitis virus infection—The CCR5 crossroad. Ticks Tick Borne Dis 10:729–741 |
Ellwanger |
2019 |
|
PMID 18514730
|
2008. Tick-borne encephalitis |
Lindquist |
2008 |
|
PMID 28830430
|
2017. Tick-borne encephalitis in a naturally infected sheep. BMC Vet Res 13:267 |
Böhm |
2017 |
|
PMID 14745507
|
2004. The role of non-viraemic transmission on the persistence and dynamics of a tick borne virus – Louping ill in red grouse (Lagopus lagopus scoticus) and mountain hares (Lepus timidus) |
Norman |
2004 |
|
PMID 9226648
|
1997. Transmission of louping ill virus between infected and uninfected ticks co-feeding on mountain hares. Med Vet Entomol 11:172–176 |
Jones |
1997 |
|
PMID 28424664
|
2017. Spotted fever: epidemiology and vector-Rickettsia-host relationship in Rio de Janeiro State. Front Microbiol 8:505 |
Montenegro |
2017 |
|
PMID 26205612
|
2016. Louping ill virus in the UK: a review of the hosts, transmission and ecological consequences of control. Exp Appl Acarol 68:363–374 |
Gilbert |
2016 |
|
PMID 33822153
|
2021. Louping-ill virus serosurvey of willow ptarmigan (Lagopus lagopus lagopus) in Norway |
Ytrehus |
2021 |
|
PMID 20778271
|
1934. Comparative aspects of louping-ill in sheep and poliomyelitis of man. Br Med J 1:885–888 |
Gordon |
1934 |
|
PMID 4772086
|
1973. Louping-ill encephalomyelitis in the sheep: VII. Influence of immune status on neuropathology |
Doherty |
1973 |
|
PMID 4116396
|
1972. Louping-ill encephalomyelitis in the sheep: V. Histopathogenesis of the fatal disease |
Doherty |
1972 |
|
PMID 5135640
|
1971. Louping-ill encephalomyelitis in the sheep. I. The relationship of viraemia and the antibody response to susceptibility |
Reid |
1971 |
|
PMID 4945207
|
1971. Louping-ill encephalomyelitis in the sheep: II. Distribution of virus and lesions in nervous tissue |
Doherty |
1971 |
|
PMID 4944376
|
1971. Louping-ill encephalomyelitis in the sheep: IV |
Doherty |
1971 |
|
PMID 24275477
|
2014. Tick-borne encephalitis virus in ticks detached from humans and follow-up of serological and clinical response. Ticks Tick Borne Dis 5:21–28 |
Lindblom |
2013 |
|
PMID 8638401
|
1996. Importance of localized skin infection in tick-borne encephalitis virus transmission. Virology 219:357–366 |
Labuda |
1996 |
|
PMID 29912706
|
2018 |
Saksida |
2018 |
|
PMID 29986483
|
2018. Tick–virus–host interactions at the cutaneous interface: the nidus of flavivirus transmission |
Hermance |
2018 |
|
PMID 38062065
|
2023. Infection of wild-caught wood mice (Apodemus sylvaticus) and yellow-necked mice (A. flavicollis) with tick-borne encephalitis virus. Sci Rep 13:21627 |
Bakker |
2023 |
|
PMID 21992229
|
2011. ISG15 facilitates cellular antiviral response to dengue and west nile virus infection in vitro. Virol J 8:1–6 |
Dai |
2011 |
|
PMID 32127025
|
2020. Pathological modeling of TBEV infection reveals differential innate immune responses in human neurons and astrocytes that correlate with their susceptibility to infection |
Fares |
2020 |
|
PMID 20035788
|
2010. ISG15 over-expression inhibits replication of the Japanese encephalitis virus in human medulloblastoma cells. Antiviral Res 85:504–511 |
Hsiao |
2009 |
|
PMID 27610098
|
2016 |
Valadão |
2016 |
|
PMID 25572883
|
2015. Mx GTPases: dynamin-like antiviral machines of innate immunity. Trends Microbiol 23:154–163 |
Haller |
2014 |
|
PMID 17804500
|
2007. Viral encounters with 2′,5′-oligoadenylate synthetase and RNase L during the interferon antiviral response |
Silverman |
2007 |
|
PMID 36670749
|
2023. Adaptive evolution of the OAS gene family provides new insights into the antiviral ability of laurasiatherian mammals. Animals (Basel) 13:209 |
Liu |
2023 |
|
PMID 26819220
|
2016. Type I Interferon response in olfactory bulb, the site of tick-borne flavivirus accumulation, is primarily regulated by IPS-1 |
Kurhade |
2016 |
|
PMID 32214471
|
2010. Polymorphism of 2′-5′-oligoadenylate synthetase (OAS) genes, associated with predisposition to severe forms of tick-borne encephalitis, in human populations of North Eurasia. Mol Biol 44:875–882 |
Barkhash |
2010 |
|
PMID 22061615
|
2012. Single nucleotide polymorphism in the promoter region of the CD209 gene is associated with human predisposition to severe forms of tick-borne encephalitis. Antiviral Res 93:64–68 |
Barkhash |
2011 |
|
PMID 35154151
|
2022. Flaviviruses: innate immunity, inflammasome activation, inflammatory cell death, and cytokines. Front Immunol 13:1–15 |
Pan |
2022 |
|
PMID 22305622
|
2012. Type 1 IFN-independent activation of a subset of interferon stimulated genes in West Nile virus Eg101-infected mouse cells. Virology 425:82–94 |
Pulit-Penaloza |
2012 |
|
PMID 34495694
|
2021. Two interferon-stimulated response elements cooperatively regulate interferon-stimulated gene expression in West Nile virus-Infected IFNAR |
Cui |
2021 |
|
PMID 23805778
|
2013 |
Palus |
2094 |
|
PMID 17212614
|
2007. Chemokines CXCL10 and CXCL11 in the cerebrospinal fluid of patients with tick-borne encephalitis. Acta Neurol Scand 115:109–114 |
Lepej |
2006 |
|
PMID 25339958
|
2014. Macrophage cytokines: involvement in immunity and infectious diseases. Front Immunol 5:491 |
Arango Duque |
2014 |
|
PMID 27434011
|
2016. Interleukin 1α and the inflammatory process |
Di Paolo |
2016 |
|
PMID 20487305
|
2010. Review: The chemokine receptor CXCR3 and its ligands CXCL9, CXCL10 and CXCL11 in neuroimmunity – a tale of conflict and conundrum. Neuropathol Appl Neurobiol 36:368–387 |
Müller |
2010 |
|
PMID 30984122
|
2019 |
Mustafá |
2019 |
|
PMID 15871909
|
2005. Steps of the tick-borne encephalitis virus replication cycle that affect neuropathogenesis |
Mandl |
2005 |
|
PMID 36298652
|
2022. A journey to the central nervous system: routes of flaviviral neuroinvasion in human disease |
Marshall |
2096 |
|
-
|
2015. Portals of viral entry into the central nervous system, p 23–47 |
Swanson |
2015 |
|
PMID 14689697
|
2003. Pathogenesis of flavivirus encephalitis. Adv Virus Res 60:273–342 |
Chambers |
2003 |
|
PMID 39054587
|
2025. Meningoencephalomyelitis and brachial plexitis in a dog infected with louping ill virus |
Fingerhood |
2025 |
|
PMID 31626874
|
2019. Flavivirus infection—A review of immunopathogenesis, immunological response, and immunodiagnosis |
Chong |
2019 |
|
-
|
1986. Pathobiology of the flaviviruses |
Monath |
1986 |
|
PMID 16814333
|
2006. A preliminary neuropathological study of Japanese encephalitis in humans and a mouse model. Trans R Soc Trop Med Hyg 100:1135–1145 |
German |
2006 |
|
PMID 25121239
|
1992. Neurology |
Ackerman |
1992 |
|
PMID 33097065
|
2020. Efficient control of Japanese encephalitis virus in the central nervous system of infected pigs occurs in the absence of a pronounced inflammatory immune response |
Redant |
2020 |
|
PMID 22826407
|
2012. Imaging findings in tick-borne encephalitis with differential diagnostic considerations. Am J Roentgenol 199:420–427 |
Horger |
2012 |
|
PMID 31675093
|
2019. Japanese encephalitis virus infects the thalamus early followed by sensory-associated cortex and other parts of the central and peripheral nervous systems |
Fu |
2019 |
|
PMID 14715969
|
2004. Nonsuppurative encephalitis in piglets after experimental inoculation of Japanese encephalitis flavivirus isolated from pigs |
Yamada |
2004 |
|
PMID 19633907
|
2009. An evaluation of the usefulness of neuroimaging for the diagnosis of Japanese encephalitis |
Dung |
2060 |
|
PMID 37956993
|
J Small Anim Pract 65:132–143 |
Gonzalo-Nadal |
2021 |
|
PMID 32738280
|
2020. Interferon stimulated gene 15 promotes Zika virus replication through regulating Jak/STAT and ISGylation pathways |
Wang |
2020 |
|
PMID 22022264
|
2011. Hepatitis C virus reveals a novel early control in acute immune response |
Arnaud |
2011 |
|
PMID 19846672
|
2010. ISG15, a ubiquitin-like interferon-stimulated gene, promotes hepatitis C virus production in vitro: implications for chronic infection and response to treatment |
Chen |
2010 |
|
PMID 27867263
|
2016. Interferon-stimulated gene 15 conjugation stimulates hepatitis B virus production independent of type I interferon signaling pathway in vitro. Mediators Inflamm 2016:7417648 |
Li |
2016 |
|
PMID 34296786
|
2021. Sequential MAVS and MyD88/TRIF signaling triggers anti-viral responses of tick-borne encephalitis virus-infected murine astrocytes |
Ghita |
2021 |
|
PMID 34948194
|
2021. Toll-like receptors (TLRs), NOD-like receptors (NLRs), and RIG-I-like receptors (RLRs) in innate immunity. TLRs, NLRs, and RLRs ligands as immunotherapeutic agents for hematopoietic diseases. Int J Mol Sci 22:13397 |
Wicherska-Pawłowska |
2021 |
|
PMID 12519399
|
2003. Changes in immune parameters and their correction in human cases of tick-borne encephalitis. Clin Exp Immunol 131:148–154 |
Atrasheuskaya |
2003 |
|
PMID 31121969
|
2019. Inflammatory immune responses in the pathogenesis of tick-borne encephalitis |
Bogovič |
2019 |
|
PMID 33766427
|
2021. Cytokine IP-10 and GM-CSF are prognostic biomarkers for severity in secondary dengue infection. Hum Immunol 82:438–445 |
Gowri Sankar |
2021 |
|
PMID 35779335
|
2022. Japanese encephalitis virus infection increases USP42 to stabilize TRIM21 and OAS1 for neuroinflammatory and anti-viral response in human microglia. Virology 573:131–140 |
Mishra |
2022 |
|
PMID 26867675
|
2016. TGF-beta1 regulates human brain pericyte inflammatory processes involved in neurovasculature function |
Rustenhoven |
2016 |
|
PMID 15368509
|
2004. Different chemokine expression in lethal and non-lethal murine West Nile virus infection |
Shirato |
2004 |
|
PMID 39063134
|
2024. Robust CXCL10/IP-10 and CCL5/RANTES production induced by tick-borne encephalitis virus in human brain pericytes despite weak infection. Int J Mol Sci 25:7892 |
Prančlová |
2024 |
|
PMID 34399621
|
2021. Blockade of autocrine CCL5 responses inhibits Zika virus persistence and spread in human brain microvascular endothelial cells. mBio 12:e0196221 |
Mladinich |
2021 |
|
PMID 27576490
|
2016. Tick-borne encephalitis virus induces chemokine RANTES expression via activation of IRF-3 pathway |
Zhang |
2016 |
|
PMID 25324719
|
2014. Chemokine receptors as important regulators of pathogenesis during arboviral encephalitis. Front Cell Neurosci 8:264 |
Michlmayr |
2014 |
|
PMID 30481615
|
2019. Neuronal transcriptomic responses to Japanese encephalitis virus infection with a special focus on chemokine CXCL11 and pattern recognition receptors RIG-1 and MDA5. Virology 527:107–115 |
Yu |
2018 |
|
PMID 16125213
|
2005. Gene expression in mice infected with West Nile virus strains of different neurovirulence. Virology 342:119–140 |
Venter |
2005 |
|
PMID 22008312
|
2011. Evaluation of CXCL10, CXCL11, CXCL12 and CXCL13 chemokines in serum and cerebrospinal fluid in patients with tick borne encephalitis (TBE). Adv Med Sci 56:311–317 |
Zajkowska |
2011 |
|
PMID 25000960
|
2014 |
Palus |
2014 |
|
PMID 24091083
|
2014 |
Palus |
2013 |
|
PMID 21629771
|
2011. Breakdown of the blood-brain barrier during tick-borne encephalitis in mice is not dependent on CD8 |
Růžek |
2011 |
|
PMID 19070884
|
2009. CD8 |
Růzek |
2009 |
|
PMID 34835061
|
2021. Transcriptomic studies suggest a coincident role for apoptosis and pyroptosis but not for autophagic neuronal death in TBEV-infected human neuronal/glial cells |
Fares |
2021 |
|
PMID 27543616
|
2016. NK cell responses to human tick-borne encephalitis virus infection |
Blom |
2016 |
|
PMID 25675945
|
2015 |
Palus |
2015 |
|
-
|
1992. Immunotherapy of tuberculosis. 1st ed. Tuberculosis and Respiratory Diseases, Elsevier Inc |
Wallis |
1992 |
|
PMID 12829035
|
2003. Development of a quantitative real-time RT-PCR assay with internal control for the laboratory detection of tick borne encephalitis virus (TBEV) RNA |
Schwaiger |
2003 |
|
PMID 8825718
|
1996. Correlation between ELISA, hemagglutination inhibition, and neutralization tests after vaccination against tick-borne encephalitis |
Holzmann |
1996 |
|
PMID 23151167
|
2012. Vaccines and vaccination against tick-borne encephalitis. Expert Rev Vaccines 11:1103–1119 |
Kollaritsch |
2012 |
|
PMID 16458368
|
2006. Humoral immunity and correlation between ELISA, hemagglutination inhibition, and neutralization tests after vaccination against tick-borne encephalitis virus in children |
Venturi |
2005 |
|
PMID 25924768
|
2015. Comparison of two commercial tick-borne encephalitis virus IgG enzyme-linked immunosorbent assays. Clin Vaccine Immunol 22:754–760 |
Weissbach |
2015 |
|
PMID 31003897
|
2019. Detection of tick-borne encephalitis virus antibodies in sera of sheep and goats in Mecklenburg-Western Pomerania (north-eastern Germany). Ticks Tick Borne Dis 10:901–904 |
Frimmel |
2019 |
|
PMID 17196266
|
2007. Bluetongue virus detection by two real-time RT-qPCRs targeting two different genomic segments |
Toussaint |
2006 |
|
PMID 34575988
|
2021. Species-specific humoral immune responses in sheep and goats upon small ruminant lentivirus infections inversely correlate with protection against virus replication and pathological lesions. Int J Mol Sci 22:9824 |
Michiels |
2021 |