Accesso libero

African swine fever virus – the possible role of flies and other insects in virus transmission

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Arias M., Jurado C., Gallardo C., Fernández-Pinero J., Sánchez-Vizcaíno J.M.: Gaps in African swine fever: Analysis and priorities. Transbound Emerg Dis 2018, 65, 235–247.Arias M. Jurado C. Gallardo C. Fernández-Pinero J. Sánchez-Vizcaíno J.M. Gaps in African swine fever: Analysis and priorities Transbound Emerg Dis 2018 65 235 24710.1111/tbed.1269528941208Search in Google Scholar

Baldacchino F., Desquesnes M., Mihok S., Foil L.D., Duvallet G., Jittapalapong S.: Tabanids: Neglected subjects of research, but important vectors of disease agents! Infect Genet Evol 2014, 28, 596–615.Baldacchino F. Desquesnes M. Mihok S. Foil L.D. Duvallet G. Jittapalapong S. Tabanids: Neglected subjects of research, but important vectors of disease agents! Infect Genet Evol 2014 28 596 61510.1016/j.meegid.2014.03.02924727644Search in Google Scholar

Baldacchino F., Muenworn V., Desquesnes M., Desoli F., Charoenviriyaphap T., Duvallet G.: Transmission of pathogens by Stomoxys flies (Diptera, Muscidae): a review. Parasite 2013, 20, 26. doi: 10.1051/parasite/2013026.Baldacchino F. Muenworn V. Desquesnes M. Desoli F. Charoenviriyaphap T. Duvallet G. Transmission of pathogens by Stomoxys flies (Diptera, Muscidae): a review Parasite 2013 20 26 10.1051/parasite/2013026375633523985165Open DOISearch in Google Scholar

Bellini S., Rutili D., Guberti V.: Preventive measures aimed at minimizing the risk of African swine fever virus spread in pig farming systems. Acta Vet Scand 2016, 58, 62. doi: 10.1186/s13028-016-0264-x.Bellini S. Rutili D. Guberti V. Preventive measures aimed at minimizing the risk of African swine fever virus spread in pig farming systems Acta Vet Scand 2016 58 62 10.1186/s13028-016-0264-x512924527899125Open DOISearch in Google Scholar

Boinas F.S., Wilson A.J., Hutchings G.H., Martins C., Dixon L.J.: The persistence of African swine fever virus in field-infected Ornithodoros erraticus during the ASF endemic period in Portugal. PLoS One 2011, 6, 1–5.Boinas F.S. Wilson A.J. Hutchings G.H. Martins C. Dixon L.J. The persistence of African swine fever virus in field-infected Ornithodoros erraticus during the ASF endemic period in Portugal PLoS One 2011 6 1 510.1371/journal.pone.0020383310502721655242Search in Google Scholar

Chenais E., Depner K., Guberti V., Dietze K., Viltrop A., Ståhl K.: Epidemiological considerations on African swine fever in Europe 2014–2018. Porcine Health Manag 2019, 5, 6. doi: 10.1186/s40813-018-0109-2.Chenais E. Depner K. Guberti V. Dietze K. Viltrop A. Ståhl K. Epidemiological considerations on African swine fever in Europe 2014–2018 Porcine Health Manag 2019 5 6 10.1186/s40813-018-0109-2632571730637117Open DOISearch in Google Scholar

Costard S., Wieland B., de Glanville W., Jori F., Rowlands R., Vosloo W., Roger F., Pfeiffer D.U., Dixon L.K.: African swine fever: how can global spread be prevented? Philos Trans R Soc Lond B Biol Sci 2009, 364, 2683–2696Costard S. Wieland B. de Glanville W. Jori F. Rowlands R. Vosloo W. Roger F. Pfeiffer D.U. Dixon L.K. African swine fever: how can global spread be prevented? Philos Trans R Soc Lond B Biol Sci 2009 364 2683 269610.1098/rstb.2009.0098286508419687038Search in Google Scholar

Enright M.R., Alexander T.J., Clifton-Hadley F.A.: Role of houseflies Musca domestica in the epidemiology of Streptococcus suis type 2. Vet Rec 1987, 6, 132–133.Enright M.R. Alexander T.J. Clifton-Hadley F.A. Role of houseflies Musca domestica in the epidemiology of Streptococcus suis type 2 Vet Rec 1987 6 132 13310.1136/vr.121.6.1323672850Search in Google Scholar

European Commission: Animal Disease Notification System (ADNS): Annual reports. https://ec.europa.eu/food/animals/animal-diseases/not-system_enEuropean Commission: Animal Disease Notification System (ADNS) Annual reports https://ec.europa.eu/food/animals/animal-diseases/not-system_enSearch in Google Scholar

Förster M., Klimpel S., Sievert K.: The house fly Musca domestica as a potential vector of metazoan parasites caught in a pig-pen in Germany. Vet Parasitol 2009, 160, 163–167.Förster M. Klimpel S. Sievert K. The house fly Musca domestica as a potential vector of metazoan parasites caught in a pig-pen in Germany Vet Parasitol 2009 160 163 16710.1016/j.vetpar.2008.10.08719081196Search in Google Scholar

Frant M., Woźniakowski G., Pejsak Z.: African swine fever (ASF) and ticks. No risk of tick-mediated ASF spread in Poland and Baltic states. J Vet Res 2017, 61, 375–380.Frant M. Woźniakowski G. Pejsak Z. African swine fever (ASF) and ticks. No risk of tick-mediated ASF spread in Poland and Baltic states J Vet Res 2017 61 375 38010.1515/jvetres-2017-0055593733329978098Search in Google Scholar

Galindo I., Alonso C.: African swine fever virus: a review. Viruses 2017, 9, 103. doi: 10.3390/v9050103.Galindo I. Alonso C. African swine fever virus: a review Viruses 2017 9 103 10.3390/v9050103545441628489063Open DOISearch in Google Scholar

Gallardo C., Soler A., Nieto R., Sánchez M.A., Martins C., Pelayo V., Carrascosa A., Revilla Y., Simón A., Briones V., Sánchez-Vizcaíno J.M., Arias M.: Experimental transmission of African swine fever (ASF) low virulent isolate NH/P68 by surviving pigs. Transbound Emerg Dis 2015, 62, 612–622. doi: 10.1111/tbed.12431.Gallardo C. Soler A. Nieto R. Sánchez M.A. Martins C. Pelayo V. Carrascosa A. Revilla Y. Simón A. Briones V. Sánchez-Vizcaíno J.M. Arias M. Experimental transmission of African swine fever (ASF) low virulent isolate NH/P68 by surviving pigs Transbound Emerg Dis 2015 62 612 622 10.1111/tbed.1243126432068Open DOISearch in Google Scholar

Guinat C., Gogin A., Blome S., Keil G., Pollin R., Pfeiffer D.U., Dixon L.: Transmission routes of African swine fever virus to domestic pigs: current knowledge and future research directions. Vet Rec 2016, 178, 262–267.Guinat C. Gogin A. Blome S. Keil G. Pollin R. Pfeiffer D.U. Dixon L. Transmission routes of African swine fever virus to domestic pigs: current knowledge and future research directions Vet Rec 2016 178 262 26710.1136/vr.103593481965926966305Search in Google Scholar

Hafez M., Gamal-Eddin F.M.: Ecological studies on Stomoxys calcitrans L. and sitiens Rond, in Egypt, with suggestions on their control. Bull Soc Entomol Egypt 1959, 43, 245–283.Hafez M. Gamal-Eddin F.M. Ecological studies on Stomoxys calcitrans L. and sitiens Rond, in Egypt, with suggestions on their control Bull Soc Entomol Egypt 1959 43 245 283Search in Google Scholar

Halasa T., Botner A., Mortensen S., Christensen H., Toft N., Boklund A.: Control of African swine fever epidemics in industrialized swine populations. Vet Microbiol 2016, 197, 142–150.Halasa T. Botner A. Mortensen S. Christensen H. Toft N. Boklund A. Control of African swine fever epidemics in industrialized swine populations Vet Microbiol 2016 197 142 15010.1016/j.vetmic.2016.11.02327938676Search in Google Scholar

Hogsette J.A., Ruff J.P., Jones C.J.: Stable fly biology and control in Northwest Florida. J Agric Entomol 1987, 4, 1–11.Hogsette J.A. Ruff J.P. Jones C.J. Stable fly biology and control in Northwest Florida J Agric Entomol 1987 4 1 11Search in Google Scholar

Holt P.S., Geden R.W., Moore W., Gast R.K.: Isolation of Salmonella enterica serovar Enteritidis from houseflies Musca domestica found in rooms containing Salmonella serovar Enteritidis-challenged hens. Appl Environ Microbiol 2007, 73, 6030–6035.Holt P.S. Geden R.W. Moore W. Gast R.K. Isolation of Salmonella enterica serovar Enteritidis from houseflies Musca domestica found in rooms containing Salmonella serovar Enteritidis-challenged hens Appl Environ Microbiol 2007 73 6030 603510.1128/AEM.00803-07207502917675422Search in Google Scholar

Jurado C., Fernández-Carrión E., Mur L., Rolesu S., Laddomada A., Sánchez-Vizcaíno J.M.: Why is African swine fever still present in Sardinia? Transbound Emerg Dis. 2018, 65, 557–566.Jurado C. Fernández-Carrión E. Mur L. Rolesu S. Laddomada A. Sánchez-Vizcaíno J.M. Why is African swine fever still present in Sardinia? Transbound Emerg Dis 2018 65 557 56610.1111/tbed.1274029027378Search in Google Scholar

Jurado C., Martínez-Avilés M., De La Torre A., Štukelj M., de Carvalho Ferreira H.C., Cerioli M., Sánchez-Vizcaíno J.M., Bellini S.: Relevant measures to prevent the spread of African swine fever in the European Union domestic pig sector. Front Vet Sci 2018, 5. doi: 10.3389/fvets.2018.00077.Jurado C. Martínez-Avilés M. De La Torre A. Štukelj M. de Carvalho Ferreira H.C. Cerioli M. Sánchez-Vizcaíno J.M. Bellini S. Relevant measures to prevent the spread of African swine fever in the European Union domestic pig sector Front Vet Sci 2018 5 10.3389/fvets.2018.00077591217529713637Open DOISearch in Google Scholar

Khamesipour F., Lankarani K.B., Honarvar B., Kwenti T.E.: A systematic review of human pathogen carried by the housefly Musca domestica L.). BMC Public Health 2018, 18, 1–15.Khamesipour F. Lankarani K.B. Honarvar B. Kwenti T.E. A systematic review of human pathogen carried by the housefly Musca domestica L.) BMC Public Health 2018 18 1 1510.1186/s12889-018-5934-3610401430134910Search in Google Scholar

Kuster K., Cousin M.E., Jemmi T., Schupbach-Regula G., Magouras I.: Expert opinion on the perceived effectiveness and importance of on-farm biosecurity measures for cattle and swine farms in Switzerland. PLoS One 2015. doi: 10.1371/journal. pone.0144533.Kuster K. Cousin M.E. Jemmi T. Schupbach-Regula G. Magouras I. Expert opinion on the perceived effectiveness and importance of on-farm biosecurity measures for cattle and swine farms in Switzerland PLoS One 2015 10.1371/journal.pone.0144533468607926656893Open DOISearch in Google Scholar

Levine O.S., Levine M.M.: Houseflies Musca domestica as mechanical vectors of shigellosis. Clin Infect Dis 1991, 13, 688–696.Levine O.S. Levine M.M. Houseflies Musca domestica as mechanical vectors of shigellosis Clin Infect Dis 1991 13 688 69610.1093/clinids/13.4.6881925289Search in Google Scholar

McOrist S., Blunt R., Gebhart C.J.: Pig-associated Lawsonia intracellularis in various on-farm dipterous fly stages. J Swine Health Prod 2011, 19, 277–283.McOrist S. Blunt R. Gebhart C.J. Pig-associated Lawsonia intracellularis in various on-farm dipterous fly stages J Swine Health Prod 2011 19 277 283Search in Google Scholar

Meerburg B.G., Vermeer H.M., Kijlstra A.: Controlling risks of pathogen transmission by flies on organic pig farms. A review. Outlook Agricult 2007, 36, 193–197.Meerburg B.G. Vermeer H.M. Kijlstra A. Controlling risks of pathogen transmission by flies on organic pig farms A review. Outlook Agricult 2007 36 193 19710.5367/000000007781891432Search in Google Scholar

Mellor P.S., Kitching R.P., Wilkinson P.J.: Mechanical transmission of capripox virus and African swine fever virus by Stomoxys calcitrans. Res Vet Sci 1987, 43, 109–112.Mellor P.S. Kitching R.P. Wilkinson P.J. Mechanical transmission of capripox virus and African swine fever virus by Stomoxys calcitrans Res Vet Sci 1987 43 109 11210.1016/S0034-5288(18)30753-7Search in Google Scholar

Montgomery R.E.: On a form of swine fever occurring in British east Africa (Kenya Colony). J Comp Pathol Ther 1921, 34, 159–191.Montgomery R.E. On a form of swine fever occurring in British east Africa (Kenya Colony) J Comp Pathol Ther 1921 34 159 19110.1016/S0368-1742(21)80031-4Search in Google Scholar

Murvosh C.M., Taggard C.: Ecological studies of the housefly. Ann Entomol Soc Am 1966, 59, 534–547.Murvosh C.M. Taggard C. Ecological studies of the housefly Ann Entomol Soc Am 1966 59 534 54710.1093/aesa/59.3.5335974098Search in Google Scholar

Olesen A.S., Lohse L., Hansen M.F., Boklund A., Halasa T., Belsham G.J., Rasmussen T.B., Bøtner A., Bødker R.: Infection of pigs with African swine fever virus via ingestion of stable flies Stomoxys calcitrans Transbound Emerg Dis 2018, 65, 1152–1157.Olesen A.S. Lohse L. Hansen M.F. Boklund A. Halasa T. Belsham G.J. Rasmussen T.B. Bøtner A. Bødker R. Infection of pigs with African swine fever virus via ingestion of stable flies Stomoxys calcitrans Transbound Emerg Dis 2018 65 1152 115710.1111/tbed.1291829877056Search in Google Scholar

Pejsak Z., Niemczuk K., Frant M., Mazur M., Pomorska-Mól M., Ziętek-Barszcz A., Bocian Ł., Łyjak M., Borowska D., Woźniakowski G.: Four years of African swine fever in Poland. New insights into epidemiology and prognosis of future disease spread. Pol J Vet Sci 2018, 21, 835–841.Pejsak Z. Niemczuk K. Frant M. Mazur M. Pomorska-Mól M. Ziętek-Barszcz A. Bocian Ł. Łyjak M. Borowska D. Woźniakowski G. Four years of African swine fever in Poland. New insights into epidemiology and prognosis of future disease spread Pol J Vet Sci 2018 21 835 841Search in Google Scholar

Penrith M.L., Vosloo W.: Review of African swine fever: transmission, spread, and control. J S Afr Vet Assoc 2009. doi: 10.4102/jsava.v80i2.172.Penrith M.L. Vosloo W. Review of African swine fever: transmission, spread, and control J S Afr Vet Assoc 2009 10.4102/jsava.v80i2.17219831264Open DOISearch in Google Scholar

Pietschmann J., Guinat C., Beer M., Pronin V., Tauscher K., Petrov A., Keil G., Blome S.: Course and transmission characteristics of oral low-dose infection of domestic pigs and European wild boar with a Caucasian African swine fever virus isolate. Arch Virol 2015, 160, 1657–1667.Pietschmann J. Guinat C. Beer M. Pronin V. Tauscher K. Petrov A. Keil G. Blome S. Course and transmission characteristics of oral low-dose infection of domestic pigs and European wild boar with a Caucasian African swine fever virus isolate Arch Virol 2015 160 1657 166710.1007/s00705-015-2430-225916610Search in Google Scholar

Pitkin A., Deen J., Otake S., Moon R., Dee S.: Further assessment of houseflies Musca domestica as vectors for the mechanical transport and transmission of porcine reproductive and respiratory syndrome virus under field conditions. Can J Vet Res 2009, 73, 91–96.Pitkin A. Deen J. Otake S. Moon R. Dee S. Further assessment of houseflies Musca domestica as vectors for the mechanical transport and transmission of porcine reproductive and respiratory syndrome virus under field conditions Can J Vet Res 2009 73 91 96Search in Google Scholar

Reis A.L., Netherton Ch., Dixon L.K.: Unraveling the armor of a killer: evasion of host defenses by African swine fever virus. J Virol 2017, 91, 1–6.Reis A.L. Netherton Ch. Dixon L.K. Unraveling the armor of a killer: evasion of host defenses by African swine fever virus J Virol 2017 91 1 610.1128/JVI.02338-16533181228031363Search in Google Scholar

Sánchez-Cordón P.J., Montoya M., Reis A.L., Dixon L.K.: African swine fever: a re-emerging viral disease threatening the global pig industry. Vet J 2018, 233, 41–48.Sánchez-Cordón P.J. Montoya M. Reis A.L. Dixon L.K. African swine fever: a re-emerging viral disease threatening the global pig industry Vet J 2018 233 41 4810.1016/j.tvjl.2017.12.025584464529486878Search in Google Scholar

Sánchez-Vizcaíno J.M., Mur L., Gomez-Villamandos J.C., Carrasco L.: An update on the epidemiology and pathology of African swine fever. J Comp Pathol 2015. doi: 10.1016/j.jcpa.2014.09.003.Sánchez-Vizcaíno J.M. Mur L. Gomez-Villamandos J.C. Carrasco L. An update on the epidemiology and pathology of African swine fever J Comp Pathol 2015 10.1016/j.jcpa.2014.09.00325443146Open DOISearch in Google Scholar

Sánchez-Vizcaíno J.M., Mur L., Martínez-López B.: African swine fever: an epidemiological update. Transbound Emerg Dis 2012. doi: 10.1111/j.1865-1682.2011.01293.x.Sánchez-Vizcaíno J.M. Mur L. Martínez-López B. African swine fever: an epidemiological update Transbound Emerg Dis 2012 10.1111/j.1865-1682.2011.01293.x22225967Open DOISearch in Google Scholar

Sierra M.A., Gomez-Villamandos J.C., Carrasco L., Fernandez A., Mozos E., Jover A.: In vivo study of hemadsorption in African swine fever virus infected cells. Vet Pathol 1991, 28, 178–181.Sierra M.A. Gomez-Villamandos J.C. Carrasco L. Fernandez A. Mozos E. Jover A. In vivo study of hemadsorption in African swine fever virus infected cells Vet Pathol 1991 28 178 18110.1177/0300985891028002132063520Search in Google Scholar

Szalanski A.L., Owens C.B., McKay T., Steelman C.D.: Detection of Campylobacter and Escherichia coli 0157:H7 from filth flies by polymerase chain reaction. Med Vet Entomol 2004, 18, 241–246.Szalanski A.L. Owens C.B. McKay T. Steelman C.D. Detection of Campylobacter and Escherichia coli 0157:H7 from filth flies by polymerase chain reaction Med Vet Entomol 2004 18 241 24610.1111/j.0269-283X.2004.00502.x15347391Search in Google Scholar

Vergne T., Gogin A., Pfeiffer D.U.: Statistical exploration of local transmission routes for African swine fever in pigs in the Russian Federation, 2007–2014. Transbound Emerg Dis 2017. doi: 10.1111/tbed.12391.Vergne T. Gogin A. Pfeiffer D.U. Statistical exploration of local transmission routes for African swine fever in pigs in the Russian Federation, 2007–2014 Transbound Emerg Dis 2017 10.1111/tbed.1239126192820Open DOISearch in Google Scholar

Wang Y.C., Chang Y., Chuang H.L., Chiu C., Yeh K., Chang C., Hsuan S., Lin W., Chen T.: Transmission of Salmonella between swine farms by the housefly Musca domestica J Food Prot 2011, 74, 1012–1016.Wang Y.C. Chang Y. Chuang H.L. Chiu C. Yeh K. Chang C. Hsuan S. Lin W. Chen T. Transmission of Salmonella between swine farms by the housefly Musca domestica J Food Prot 2011 74 1012 101610.4315/0362-028X.JFP-10-39421669083Search in Google Scholar

eISSN:
2450-8608
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Molecular Biology, Microbiology and Virology, other, Medicine, Veterinary Medicine