Cite

Albertini A.A.V., Schoehn G., Weissenhorn W., Ruigrok R.W.H.: Structural aspects of rabies virus replication. Cell. Mol. Life. Sci. 65, 282–294 (2008)AlbertiniA.A.V.SchoehnG.WeissenhornW.RuigrokR.W.H.Structural aspects of rabies virus replicationCell. Mol. Life. Sci.65282294200810.1007/s00018-007-7298-1Search in Google Scholar

Amengual B., Bourhy H., López-Roig M., Serra-Cobo J.: Temporal dynamics of European bat Lyssavirus type 1. and survival of Myotis myotis bats in natural colonies. PloS One, 2, e566 (2007)AmengualB.BourhyH.López-RoigM.Serra-CoboJ.Temporal dynamics of European bat Lyssavirus type 1. and survival of Myotis myotis bats in natural coloniesPloS One2e566200710.4016/5380.01Search in Google Scholar

Arai Y.T., Kuzmin I.V., Kameoka Y., Botvinkin A.D.: New lyssavirus genotype from the lesser mouse-eared bat (Myotis blythi), Kyrghyzstan. Emerg. Infect. Dis. 9, 333–337 (2003)AraiY.T.KuzminI.V.KameokaY.BotvinkinA.D.New lyssavirus genotype from the lesser mouse-eared bat (Myotis blythi), KyrghyzstanEmerg. Infect. Dis.9333337200310.3201/eid0903.020252Search in Google Scholar

Aramburo A., Willoughby R.E., Bollen A.W., Glaser C.A., Hsieh C.J., Davis S.L., Martin K.W., Roy-Burman A.: Failure of the Milwaukee protocol in a child with rabies. Clin. Infect Dis. (2011)AramburoA.WilloughbyR.E.BollenA.W.GlaserC.A.HsiehC.J.DavisS.L.MartinK.W.Roy-BurmanA.Failure of the Milwaukee protocol in a child with rabiesClin. Infect Dis.201110.1093/cid/cir483Search in Google Scholar

Banyard A.C., Hayman D., Johnson N., McElhinney L., Fooks A.R.: Chapter 12 – Bats and Lyssaviruses. Adv. Virus. Res. 79, 239–289 (2011)BanyardA.C.HaymanD.JohnsonN.McElhinneyL.FooksA.R.Chapter 12 – Bats and LyssavirusesAdv. Virus. Res.79239289201110.1016/B978-0-12-387040-7.00012-3Search in Google Scholar

Begeman L., GeurtsvanKessel C., Finke S., Freuling C.M., Koopmans M., Müller T., Ruigrok T.J.H., Kuiken T.: Comparative pathogenesis of rabies in bats and carnivores, and implications for spillover to humans. Lancet Infect. Dis. 18, e147–e159 (2018)BegemanL.GeurtsvanKesselC.FinkeS.FreulingC.M.KoopmansM.MüllerT.RuigrokT.J.H.KuikenT.Comparative pathogenesis of rabies in bats and carnivores, and implications for spillover to humansLancet Infect. Dis.18e147e159201810.1016/S1473-3099(17)30574-1Search in Google Scholar

Boulger L.R., Porterfield J.S.: Isolation of a virus from Nigerian fruit bats. Trans. R. Soc. Trop. Med. Hyg. 52, 421–424 (1958)BoulgerL.R.PorterfieldJ.S.Isolation of a virus from Nigerian fruit batsTrans. R. Soc. Trop. Med. Hyg.52421424195810.1016/0035-9203(58)90127-5Search in Google Scholar

Brzózka K., Finke S., Conzelmann K.K.: Identification of the rabies virus alpha/beta interferon antagonist: phosphoprotein P interferes with phosphorylation of interferon regulatory factor 3. J. Virol. 79, 7673–7681 (2005)BrzózkaK.FinkeS.ConzelmannK.K.Identification of the rabies virus alpha/beta interferon antagonist: phosphoprotein P interferes with phosphorylation of interferon regulatory factor 3J. Virol.7976737681200510.1128/JVI.79.12.7673-7681.2005114366715919920Search in Google Scholar

Brzózka K., Finke S., Conzelmann K.K.: Inhibition of interferon signaling by rabies virus phosphoprotein P: activation-dependent binding of STAT1 and STAT2. J. Virol. 80, 2675–2683 (2006)BrzózkaK.FinkeS.ConzelmannK.K.Inhibition of interferon signaling by rabies virus phosphoprotein P: activation-dependent binding of STAT1 and STAT2J. Virol.8026752683200610.1128/JVI.80.6.2675-2683.2006139547516501077Search in Google Scholar

Ceballos N.A., Morón S.V., Berciano J.M., Nicolás O., López C.A., Juste J., Nevado C.R., Setién Á.A., Echevarría J.E.: Novel Lyssavirus in Bat, Spain. Emerg. Infect. Dis. 19, 793–795 (2013)CeballosN.A.MorónS.V.BercianoJ.M.NicolásO.LópezC.A.JusteJ.NevadoC.R.SetiénÁ.A.EchevarríaJ.E.Novel Lyssavirus in Bat, SpainEmerg. Infect. Dis.19793795201310.3201/eid1905.121071364750023648051Search in Google Scholar

Ceccaldi P.E., Valtorta F., Braud S., Hellio R., Tsiang H.: Alteration of the actin-based cytoskeleton by rabies virus. J. Gen. Virol. 78, 2831–2835 (1997)CeccaldiP.E.ValtortaF.BraudS.HellioR.TsiangH.Alteration of the actin-based cytoskeleton by rabies virusJ. Gen. Virol.7828312835199710.1099/0022-1317-78-11-28319367369Search in Google Scholar

Chopy D., Detje C.N., Lafage M., Kalinke U., Lafon M.: The type I interferon response bridles rabies virus infection and reduces pathogenicity. J. Neurovirol. 17, 353 (2011)ChopyD.DetjeC.N.LafageM.KalinkeU.LafonM.The type I interferon response bridles rabies virus infection and reduces pathogenicityJ. Neurovirol.17353201110.1007/s13365-011-0041-621805057Search in Google Scholar

Faber M., Pulmanausahakul R., Hodawadekar S.S., Spitsin S., McGettigan J.P., Schnell M.J., Dietzschold B.: Overexpression of the rabies virus glycoprotein results in enhancement of apoptosis and antiviral immune response. J. Virol. 76, 3374–3381 (2002)FaberM.PulmanausahakulR.HodawadekarS.S.SpitsinS.McGettiganJ.P.SchnellM.J.DietzscholdB.Overexpression of the rabies virus glycoprotein results in enhancement of apoptosis and antiviral immune responseJ. Virol.7633743381200210.1128/JVI.76.7.3374-3381.2002Search in Google Scholar

Familusi J.B., Moore D.L.: Isolation of a rabies related virus from the cerebrospinal fluid of a child with “aseptic meningitis”. Afr. J. Med. Sci. 3, 93–96 (1972)FamilusiJ.B.MooreD.L.Isolation of a rabies related virus from the cerebrospinal fluid of a child with “aseptic meningitis”Afr. J. Med. Sci.393961972Search in Google Scholar

Finke S., Conzelmann K.K.: Replication strategies of rabies virus. Virus. Res. 111, 120–131 (2005)FinkeS.ConzelmannK.K.Replication strategies of rabies virusVirus. Res.111120131200510.1016/j.virusres.2005.04.00415885837Search in Google Scholar

Francis J.R., Nourse C., Vaska V.L., Calvert S., Northill J.A., McCall B., Mattke A.C.: Australian Bat Lyssavirus in a Child: The First Reported Case. Pediatrics, 133, e1063-e1067 (2014)FrancisJ.R.NourseC.VaskaV.L.CalvertS.NorthillJ.A.McCallB.MattkeA.C.Australian Bat Lyssavirus in a Child: The First Reported CasePediatrics133e1063e1067201410.1542/peds.2013-178224590754Search in Google Scholar

Główny Inspektor Sanitarny: Komunikat Głównego Inspektora Sanitarnego w sprawie Programu Szczepień Ochronnych na rok 2018. Dziennik Urzędowy Ministra Zdrowia, poz. 108, Warszawa (2017)Główny Inspektor SanitarnyKomunikat Głównego Inspektora Sanitarnego w sprawie Programu Szczepień Ochronnych na rok 2018Dziennik Urzędowy Ministra Zdrowiapoz. 108Warszawa2017Search in Google Scholar

Hanna J.N., Carney I.K., Smith G.A., Deverill J.E., Botha J.A., Serafin I.L., Barrower B.J., Fitzpatrick P.F., Searle J.W.: Australian bat lyssavirus infection: a second human case, with a long incubation period. Med. J. Aust. 172, 597–599 (2000)HannaJ.N.CarneyI.K.SmithG.A.DeverillJ.E.BothaJ.A.SerafinI.L.BarrowerB.J.FitzpatrickP.F.SearleJ.W.Australian bat lyssavirus infection: a second human case, with a long incubation periodMed. J. Aust.172597599200010.5694/j.1326-5377.2000.tb124126.x10914106Search in Google Scholar

Hooper D.C.: The role of immune responses in the pathogenesis of rabies. J. Neurovirol. (2005)HooperD.C.The role of immune responses in the pathogenesis of rabiesJ. Neurovirol.200510.1080/1355028059090041815804966Search in Google Scholar

International Committee on Taxonomy of Viruses: Genus: Lyssavirus, https://talk.ictvonline.org/ictv-reports/ictv_online_report/negative-sense-rna-viruses/mononegavirales/w/rhabdoviridae/795/genus-lyssavirus (27.02.2019)International Committee on Taxonomy of VirusesGenus: Lyssavirushttps://talk.ictvonline.org/ictv-reports/ictv_online_report/negative-sense-rna-viruses/mononegavirales/w/rhabdoviridae/795/genus-lyssavirus(27.02.2019)Search in Google Scholar

International Committee on Taxonomy of Viruses: Taxonomy, https://talk.ictvonline.org/taxonomy/ (27.02.2019)International Committee on Taxonomy of VirusesTaxonomyhttps://talk.ictvonline.org/taxonomy/(27.02.2019)Search in Google Scholar

Johnson N., Cunningham A.F., Fooks A.R.: The immune response to rabies virus infection and vaccination. Vaccine, 28, 3896–3901 (2010)JohnsonN.CunninghamA.F.FooksA.R.The immune response to rabies virus infection and vaccinationVaccine2838963901201010.1016/j.vaccine.2010.03.03920368119Search in Google Scholar

Johnson N., Selden D., Parsons G., Healy D., Brookes S.M., McElhinney L. M., Hutson A.M., Fooks A.R.: Isolation of European bat lyssavirus type 2 from Daubenton’s bat in the United Kingdom. Vet. Rec. 152, 387 (2003)JohnsonN.SeldenD.ParsonsG.HealyD.BrookesS.M.McElhinney L.M.HutsonA.M.FooksA.R.Isolation of European bat lyssavirus type 2 from Daubenton’s bat in the United KingdomVet. Rec.152387200310.1136/vr.152.13.38312696703Search in Google Scholar

Kell A.M., Gale Jr M.: RIG-I in RNA virus recognition. Virology, 479, 110–121 (2015)KellA.M.Gale JrM.RIG-I in RNA virus recognitionVirology479110121201510.1016/j.virol.2015.02.017442408425749629Search in Google Scholar

Kgaladi J., Wright N., Coertse J., Markotter W., Marston D., Fooks A.R., Freuling C.M., Müller T.F., Sabeta C.T., Nel L.H.: Diversity and epidemiology of Mokola virus. PLoS Negl. Trop. Dis. 7, e2511 (2013)KgaladiJ.WrightN.CoertseJ.MarkotterW.MarstonD.FooksA.R.FreulingC.M.MüllerT.F.SabetaC.T.NelL.H.Diversity and epidemiology of Mokola virusPLoS Negl. Trop. Dis.7e2511201310.1371/journal.pntd.0002511381211524205423Search in Google Scholar

Kowalinski E., Lunardi T., McCarthy A.A., Louber J., Brunel J., Grigorov B. i wsp.: Structural basis for the activation of innate immune pattern-recognition receptor RIG-I by viral RNA. Cell, 147, 423–435 (2011)KowalinskiE.LunardiT.McCarthyA.A.LouberJ.BrunelJ.GrigorovB.i wspStructural basis for the activation of innate immune pattern-recognition receptor RIG-I by viral RNACell147423435201110.1016/j.cell.2011.09.03922000019Search in Google Scholar

Lahaye X., Vidy A., Pomier C., Obiang L., Harper F., Gaudin Y., Blondel D.: Functional characterization of Negri bodies (NBs) in rabies virus-infected cells: Evidence that NBs are sites of viral transcription and replication. J. Virol. 83, 7948–7958 (2009)LahayeX.VidyA.PomierC.ObiangL.HarperF.GaudinY.BlondelD.Functional characterization of Negri bodies (NBs) in rabies virus-infected cells: Evidence that NBs are sites of viral transcription and replicationJ. Virol.8379487958200910.1128/JVI.00554-09271576419494013Search in Google Scholar

Markotter W., Randles J., Rupprecht C.E., Sabeta C.T., Taylor P.J., Wandeler A.I., Nel L.H.: Lagos Bat Virus, South Africa. Emerg. Infect. Dis. 12, 504–506 (2006)MarkotterW.RandlesJ.RupprechtC.E.SabetaC.T.TaylorP.J.WandelerA.I.NelL.H.Lagos Bat Virus, South AfricaEmerg. Infect. Dis.12504506200610.3201/eid1203.051306329146116704795Search in Google Scholar

Marzec A., Smreczak M., Żmudziński J.F.: Taksonomia rodzaju Lyssavirus. Med. Wet. 72, 281–283 (2016)MarzecA.SmreczakM.ŻmudzińskiJ.F.Taksonomia rodzaju LyssavirusMed. Wet.722812832016Search in Google Scholar

Masatani T., Ito N., Shimizu K., Ito Y., Nakagawa K., Sawaki Y. et al.: Rabies virus nucleoprotein functions to evade activation of the RIG-I-mediated antiviral response. J. Virol. 84, 4002–4012 (2010)MasataniT.ItoN.ShimizuK.ItoY.NakagawaK.SawakiY.Rabies virus nucleoprotein functions to evade activation of the RIG-I-mediated antiviral responseJ. Virol.8440024012201010.1128/JVI.02220-09284951120130065Search in Google Scholar

Masatani T., Ozawa M., Yamada K., Ito N., Horie M., Matsuu A. et al.: Contribution of the interaction between the rabies virus P protein and I-kappa B kinase – to the inhibition of type I IFN induction signalling. J. Gen. Virol. 97, 316–326 (2016)MasataniT.OzawaM.YamadaK.ItoN.HorieM.MatsuuA.Contribution of the interaction between the rabies virus P protein and I-kappa B kinase – to the inhibition of type I IFN induction signallingJ. Gen. Virol.97316326201610.1099/jgv.0.00036226647356Search in Google Scholar

Murray P.R., Rosenthal K.S., Pfaller M.A.: Mikrobiologia, ed. Przondo-Mordarska A., Martirosian G., Szkaradkiewicz A., Elsevier Urban & Partner, Wrocław, 2011, p. 569–573MurrayP.R.RosenthalK.S.PfallerM.A.Mikrobiologiaed.Przondo-MordarskaA.MartirosianG.SzkaradkiewiczA.Elsevier Urban & PartnerWrocław2011p.569573Search in Google Scholar

Nakamichi K., Inoue S., Takasaki T., Morimoto K., Kurane I.: Rabies virus stimulates nitric oxide production and CXC chemokine ligand 10 expression in macrophages through activation of extracellular signal-regulated kinases 1 and 2. J. Virol. 78, 9376–9388 (2004)NakamichiK.InoueS.TakasakiT.MorimotoK.KuraneI.Rabies virus stimulates nitric oxide production and CXC chemokine ligand 10 expression in macrophages through activation of extracellular signal-regulated kinases 1 and 2J. Virol.7893769388200410.1128/JVI.78.17.9376-9388.200450693215308732Search in Google Scholar

National Association of State Public Health Veterinarians, Compendium of Animal Rabies Prevention and Control Committee, Brown C.M., Slavinski S., Ettestad P., Sidwa T.J., Sorhage F.E.: Compendium of animal rabies prevention and control, 2016. J. Am. Vet. Med. Assoc. 248, 505–517 (2016)National Association of State Public Health Veterinarians, Compendium of Animal Rabies Prevention and Control CommitteeBrownC.M.SlavinskiS.EttestadP.SidwaT.J.SorhageF.E.Compendium of animal rabies prevention and control, 2016J. Am. Vet. Med. Assoc.248505517201610.2460/javma.248.5.50526885593Search in Google Scholar

Niu X., Wang H., Fu Z.F.: Role of Chemokines in Rabies Pathogenesis and Protection. Adv. Virus. Res. (2011)NiuX.WangH.FuZ.F.Role of Chemokines in Rabies Pathogenesis and ProtectionAdv. Virus. Res.201110.1016/B978-0-12-387040-7.00005-6715019621601043Search in Google Scholar

Ostrowska J.D., Hermanowska-Szpakowicz T.: Wścieklizna i jej profilaktyka u ludzi. Med. Wet. 53, 144–147 (1997)OstrowskaJ.D.Hermanowska-SzpakowiczT.Wścieklizna i jej profilaktyka u ludziMed. Wet.531441471997Search in Google Scholar

Pancer K., Gut W., Litwińska B.: Filowirusy – wirusy obecne od milionów lat – dlaczego teraz wybuchła tak wielka epidemia? Post. Mikrobiol. 55, 205–214 (2016)PancerK.GutW.LitwińskaB.Filowirusy – wirusy obecne od milionów lat – dlaczego teraz wybuchła tak wielka epidemia?Post. Mikrobiol.552052142016Search in Google Scholar

Pawan J.L.: Rabies in the vampire bat of Trinidad, with special reference to the clinical course and the latency of infection. Ann. Trop. Med. Parasitol. 30, 101–129 (1936)PawanJ.L.Rabies in the vampire bat of Trinidad, with special reference to the clinical course and the latency of infectionAnn. Trop. Med. Parasitol.30101129193610.1080/00034983.1936.11684948Search in Google Scholar

Pawan J.L.: The transmission of paralytic rabies in Trinidad by the vampire bat (Desmodus rotundus murinus Wagner, 1840). Ann. Trop. Med. Parasitol. 30, 137–156 (1936)PawanJ.L.The transmission of paralytic rabies in Trinidad by the vampire bat (Desmodus rotundus murinus Wagner, 1840)Ann. Trop. Med. Parasitol.301371561936Search in Google Scholar

Paweska J.T., Blumberg L.H., Liebenberg C., Hewlett R.H., Grobbelaar A.A., Leman P.A., Croft J.E., Nel L.H., Nutt L., Swanepoel R.: Fatal Human Infection with Rabies-related Duvenhage Virus, South Africa. Emerg. Infect. Dis. 12, 1965–1967 (2006)PaweskaJ.T.BlumbergL.H.LiebenbergC.HewlettR.H.GrobbelaarA.A.LemanP.A.CroftJ.E.NelL.H.NuttL.SwanepoelR.Fatal Human Infection with Rabies-related Duvenhage Virus, South AfricaEmerg. Infect. Dis.1219651967200610.3201/eid1212.060764329136917326954Search in Google Scholar

Poisson N., Real E., Gaudin Y., Vaney M.C., King S., Jacob Y. et al.: Molecular basis for the interaction between rabies virus phosphoprotein P and the dynein light chain LC8: dissociation of dynein-binding properties and transcriptional functionality of P. J. Gen. Virol. 82, 2691–2696 (2001)PoissonN.RealE.GaudinY.VaneyM.C.KingS.JacobY.Molecular basis for the interaction between rabies virus phosphoprotein P and the dynein light chain LC8: dissociation of dynein-binding properties and transcriptional functionality of PJ. Gen. Virol.8226912696200110.1099/0022-1317-82-11-269111602781Search in Google Scholar

Rieder M., Brzózka K., Pfaller C.K., Cox J.H., Stitz L., Conzelmann K.K.: Genetic dissection of interferon-antagonistic functions of rabies virus phosphoprotein: inhibition of interferon regulatory factor 3 activation is important for pathogenicity. J. Virol. 85, 842–852 (2011)RiederM.BrzózkaK.PfallerC.K.CoxJ.H.StitzL.ConzelmannK.K.Genetic dissection of interferon-antagonistic functions of rabies virus phosphoprotein: inhibition of interferon regulatory factor 3 activation is important for pathogenicityJ. Virol.85842852201110.1128/JVI.01427-10302002821084487Search in Google Scholar

Rieder M., Finke S., Conzelmann K.K.: Interferon in lyssavirus infection. Berl. Munch. Tierarztl. Wochenschr. 125, 209–218 (2012)RiederM.FinkeS.ConzelmannK.K.Interferon in lyssavirus infectionBerl. Munch. Tierarztl. Wochenschr.1252092182012Search in Google Scholar

Rodney E., Rupprecht C.E. et al.: Survival after treatment of rabies with induction of coma. N. Engl. J. Med. 352, 2508–2514 (2005)RodneyE.RupprechtC.E.Survival after treatment of rabies with induction of comaN. Engl. J. Med.35225082514200510.1056/NEJMoa05038215958806Search in Google Scholar

Rosner F.: Rabies in the Talmud. Med. Hist. 18, 198 (1974)RosnerF.Rabies in the TalmudMed. Hist.18198197410.1017/S0025727300019451Search in Google Scholar

Rupprecht C.E., Smith J.S., Fekadu M., Childs J.E.: The ascension of wildlife rabies: a cause for public health concern or intervention? Emerg. Infect. Dis. 1, 107 (1995)RupprechtC.E.SmithJ.S.FekaduM.ChildsJ.E.The ascension of wildlife rabies: a cause for public health concern or intervention?Emerg. Infect. Dis.1107199510.3201/eid0104.95040126268878903179Search in Google Scholar

Rynans S., de Walthoffen S.W., Dzieciątkowski T., Młynarczyk G.: Wirusowe zakażenia ośrodkowego układu nerwowego. Część II: Wirusy RNA. Post. Mikrobiol. 4, 349–354 (2013)RynansS.de WalthoffenS.W.DzieciątkowskiT.MłynarczykG.Wirusowe zakażenia ośrodkowego układu nerwowegoCzęść II: Wirusy RNAPost. Mikrobiol.43493542013Search in Google Scholar

Sadkowska-Todys M.: Wścieklizna – aktualne problemy epidemiologiczne. Pol. Przegl. Neurol. 2, 37–42 (2006)Sadkowska-TodysM.Wścieklizna – aktualne problemy epidemiologicznePol. Przegl. Neurol.237422006Search in Google Scholar

Samorek-Salamonowicz E., Niczyporuk J.S.: Wirus Zachodniego Nilu oraz inne nowo pojawiające się zagrożenia zdrowia publicznego. Post. Mikrobiol. 3, 187–190 (2010)Samorek-SalamonowiczE.NiczyporukJ.S.Wirus Zachodniego Nilu oraz inne nowo pojawiające się zagrożenia zdrowia publicznegoPost. Mikrobiol.31871902010Search in Google Scholar

Schatz J., Freuling C.M. et al.: Bat rabies surveillance in Europe. Zoonoses Public Hlth. 60, 22–34 (2013)SchatzJ.FreulingC.M.Bat rabies surveillance in EuropeZoonoses Public Hlth.602234201310.1111/zph.1200222963584Search in Google Scholar

Serra-Cobo J., Amengual B., Abellán C., Bourhy H.: European bat lyssavirus infection in Spanish bat populations. Emerg. Infect. Dis. 8, 413 (2002)Serra-CoboJ.AmengualB.AbellánC.BourhyH.European bat lyssavirus infection in Spanish bat populationsEmerg. Infect. Dis.8413200210.3201/eid0804.010263273023211971777Search in Google Scholar

SIB Swiss Institute of Bioinformatics: Lyssavirus, ViralZone, https://viralzone.expasy.org/22 (22.04.2018)SIB Swiss Institute of BioinformaticsLyssavirus, ViralZonehttps://viralzone.expasy.org/22(22.04.2018)Search in Google Scholar

Speare R., Skerratt L., Foster R., Berger L., Hooper P., Lunt R., Blair D., Hansman D., Goulet M., Cooper S.: Australian bat lyssavirus infection in three fruit bats from north Queensland. Commun. Dis. Intell. 21, 117–120 (1997)SpeareR.SkerrattL.FosterR.BergerL.HooperP.LuntR.BlairD.HansmanD.GouletM.CooperS.Australian bat lyssavirus infection in three fruit bats from north QueenslandCommun. Dis. Intell.211171201997Search in Google Scholar

Tan G.S., Preuss M.A., Williams J.C., Schnell M.J.: The dynein light chain 8 binding motif of rabies virus phosphoprotein promotes efficient viral transcription. Proc. Natl. Acad. Sci. USA, 104, 7229–7234 (2007)TanG.S.PreussM.A.WilliamsJ.C.SchnellM.J.The dynein light chain 8 binding motif of rabies virus phosphoprotein promotes efficient viral transcriptionProc. Natl. Acad. Sci. USA10472297234200710.1073/pnas.0701397104185536417438267Search in Google Scholar

Tignor G.H., Murphy F.A., Clark H.F., Shope R.E., Madore P., Bauer S.P., Buckley S.M., Meredith C.D.: Duvenhage Virus: Morphological, Biochemical, Histopathological and Antigenic Relationships to the Rabies Serogroup. J. Gen. Virol. 37, 595–611 (1977)TignorG.H.MurphyF.A.ClarkH.F.ShopeR.E.MadoreP.BauerS.P.BuckleyS.M.MeredithC.D.Duvenhage Virus: Morphological, Biochemical, Histopathological and Antigenic Relationships to the Rabies SerogroupJ. Gen. Virol.37595611197710.1099/0022-1317-37-3-595Search in Google Scholar

van Thiel P.P.A.M., van den Hoek J.A.R., Eftimov F., Tepaske R., Zaaijer H.J., Spanjaard L., de Boer H.E.L., van Doornum G.J.J., Schutten M., Osterhaus A.D., Kager P.A.: Fatal case of human rabies (Duvenhage virus) from a bat in Kenya: the Netherlands, December 2007. Eurosurveillance, 13, 1–2 (2008)van ThielP.P.A.M.van den HoekJ.A.R.EftimovF.TepaskeR.ZaaijerH.J.SpanjaardL.de BoerH.E.L.van DoornumG.J.J.SchuttenM.OsterhausA.D.KagerP.A.Fatal case of human rabies (Duvenhage virus) from a bat in Kenya: the Netherlands, December 2007Eurosurveillance1312200810.2807/ese.13.02.08007-enSearch in Google Scholar

Vázquez-Morón S., Avellón A., Echevarría J.E.: RT-PCR for detection of all seven genotypes of Lyssavirus genus. J. Virol. Methods 135, 281–287 (2006)Vázquez-MorónS.AvellónA.EchevarríaJ.E.RT-PCR for detection of all seven genotypes of Lyssavirus genusJ. Virol. Methods135281287200610.1016/j.jviromet.2006.03.00816713633Search in Google Scholar

Von Teichman B.F., De Koker W.C., Bosch S.J.E., Bishop G.C., Meredith C.D., Bingham J.: Mokola virus infection: description of recent South African cases and a review of the virus epidemiology: case report. J.S. Afr. Vet. Assoc. 69, 169–171 (1998)Von TeichmanB.F.De KokerW.C.BoschS.J.E.BishopG.C.MeredithC.D.BinghamJ.Mokola virus infection: description of recent South African cases and a review of the virus epidemiology: case reportJ.S. Afr. Vet. Assoc.69169171199810.4102/jsava.v69i4.84710192092Search in Google Scholar

Walker P.J., Blasdell K.R., Calisher C.H., Dietzgen R.G., Kondo H., Kurath G. i wsp.: ICTV virus taxonomy profile: Rhabdoviridae. J. Gen. Virol. 99, 447–448 (2018)WalkerP.J.BlasdellK.R.CalisherC.H.DietzgenR.G.KondoH.KurathG.i wspICTV virus taxonomy profile: RhabdoviridaeJ. Gen. Virol.99447448201810.1099/jgv.0.00102029465028Search in Google Scholar

WHO/Department of Control of Neglected Tropical Diseases: Rabies vaccines: WHO position paper – April 2018 – Weekly epidemiological record (2018)WHO/Department of Control of Neglected Tropical DiseasesRabies vaccines: WHO position paper – April 2018 – Weekly epidemiological record2018Search in Google Scholar

Wilde H., Hemachudha T.: The “Milwaukee protocol” for treatment of human rabies is no longer valid. Pediatr. Infect. Dis. J. 34, 678–9 (2015)WildeH.HemachudhaT.The “Milwaukee protocol” for treatment of human rabies is no longer validPediatr. Infect. Dis. J.346789201510.1097/INF.000000000000064125970115Search in Google Scholar

Willoughby R.E., Opladen T., Maier T., Rhead W., Schmiedel S., Hoyer J., Drosten C., Rupprecht C.E., Hyland K., Hoffmann G.F.: Tetrahydrobiopterin deficiency in human rabies. J. Inherit. Metab. Dis. 32, 65–72 (2009)WilloughbyR.E.OpladenT.MaierT.RheadW.SchmiedelS.HoyerJ.DrostenC.RupprechtC.E.HylandK.HoffmannG.F.Tetrahydrobiopterin deficiency in human rabiesJ. Inherit. Metab. Dis.326572200910.1007/s10545-008-0949-z18949578Search in Google Scholar

Wiltzer L., Okada K., Yamaoka S., Larrous F., Kuusisto H.V., Sugiyama M. i wsp.: Interaction of rabies virus P-protein with STAT proteins is critical to lethal rabies disease. J. Infect. Dis. 209, 1744–1753 (2013)WiltzerL.OkadaK.YamaokaS.LarrousF.KuusistoH.V.SugiyamaM.i wspInteraction of rabies virus P-protein with STAT proteins is critical to lethal rabies diseaseJ. Infect. Dis.20917441753201310.1093/infdis/jit82924367042Search in Google Scholar

World Health O.: Rabies vaccines: WHO position paper, April 2018 – Recommendations. Vaccine, (2018)World Health O.Rabies vaccines: WHO position paper, April 2018 – RecommendationsVaccine2018Search in Google Scholar

World Health Organization: WHO expert consultation on rabies: first report. World Health Organization 2005, Genewa (2004)World Health OrganizationWHO expert consultation on rabies: first reportWorld Health Organization 2005Genewa2004Search in Google Scholar

Zandi F., Eslami N., Torkashvand F., Fayaz A., Khalaj V., Vaziri B.: Expression changes of cytoskeletal associated proteins in proteomic profiling of neuroblastoma cells infected with different strains of rabies virus. J. Med. Virol. 85, 336–347 (2013)ZandiF.EslamiN.TorkashvandF.FayazA.KhalajV.VaziriB.Expression changes of cytoskeletal associated proteins in proteomic profiling of neuroblastoma cells infected with different strains of rabies virusJ. Med. Virol.85336347201310.1002/jmv.2345823168799Search in Google Scholar

Zeiler F.A., Jackson A.C.: Critical Appraisal of the Milwaukee Protocol for Rabies: This Failed Approach Should Be Abandoned. Can. J. Neurol. Sci. 43, 44–51 (2015)ZeilerF.A.JacksonA.C.Critical Appraisal of the Milwaukee Protocol for Rabies: This Failed Approach Should Be AbandonedCan. J. Neurol. Sci.434451201510.1017/cjn.2015.33126639059Search in Google Scholar

eISSN:
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Journal Subjects:
Life Sciences, Microbiology and Virology