À propos de cet article

Citez

A Akira S., Hiroaki H.: recognition of pathogen-associated molecular patterns by TLR family. Immunol Letters 2003, 85, 2, 85–95.Akira SAHiroakiH.recognition of pathogen-associated molecular patterns by TLR familyImmunol Letters2003852859510.1016/S0165-2478(02)00228-6Search in Google Scholar

Ashour D.S.: Toll-like receptor signaling in parasitic infections. Expert Rev Clin Immunol 2015, 11, 771–780.AshourD.S.Toll-like receptor signaling in parasitic infectionsExpert Rev Clin Immunol20151177178010.1586/1744666X.2015.1037286Search in Google Scholar

Becker I., Salaiza N., Aguirre M., Delgado J., Carrillo-Carrasco N., Kobeh L.G., Ruiz A., Cervantes R., Torres A.P., Cabrera N., González A., Maldonado C., Isibasi A.: Leishmania lipophosphoglycan (LPG) activates NK cells through toll-like receptor-2. Mol Biochem Parasitol 2003, 130, 65–74.BeckerI.SalaizaN.AguirreM.DelgadoJ.Carrillo-CarrascoN.KobehL.G.RuizA.CervantesR.TorresA.P.CabreraN.GonzálezA.MaldonadoC.IsibasiA.Leishmania lipophosphoglycan (LPG) activates NK cells through toll-like receptor-2Mol Biochem Parasitol2003130657410.1016/S0166-6851(03)00160-9Search in Google Scholar

Bronstein A.M., Lukashev A.N.: Possible case of trichinellosis associated with beaver Castor fiber meat. J Helminthol 2018, 3, 1–3.BronsteinA.M.LukashevA.N.Possible case of trichinellosis associated with beaver Castor fiber meatJ Helminthol201831310.1017/S0022149X18000342Search in Google Scholar

Cario E., Podolsky D.: Differential alteration in intestinal epithelial cell expression of toll-like receptor 3 (TLR3) and TLR4 in inflammatory bowel disease. Infect Immun 2000, 68, 7010–7017.CarioE.PodolskyD.Differential alteration in intestinal epithelial cell expression of toll-like receptor 3 (TLR3) and TLR4 in inflammatory bowel diseaseInfect Immun2000687010701710.1128/IAI.68.12.7010-7017.2000Search in Google Scholar

Debierre-Grockiego F., Campos M., Azzouz N., Schmidt J., Bieker U., Resende M., Mansur D., Weingart R., Schmidt R., Golenbock D., Gazzinelli R., Schwarz R.: Activation of TLR2 and TLR4 by glycosylphosphatidylinositols derived from Toxoplasma gondii J Immunol 2007, 179, 1129–1137.Debierre-GrockiegoF.CamposM.AzzouzN.SchmidtJ.BiekerU.ResendeM.MansurD.WeingartR.SchmidtR.GolenbockD.GazzinelliR.SchwarzR.Activation of TLR2 and TLR4 by glycosylphosphatidylinositols derived from Toxoplasma gondiiJ Immunol20071791129113710.4049/jimmunol.179.2.1129Search in Google Scholar

Garside P., Grencis R.K., Mowat A. M.: T lymphocyte dependent enteropathy in murine Trichinella spiralis infection. Parasite Immunol 1992, 14, 217–225.GarsideP.GrencisR.K.MowatA. M.T lymphocyte dependent enteropathy in murine Trichinella spiralis infectionParasite Immunol19921421722510.1111/j.1365-3024.1992.tb00462.xSearch in Google Scholar

Gruden-Movsesijan A., Ilic N., Mostarica-Stojkovic M., Stosic-Grujicic S., Milic M., Sofronic-Milosavljevic L.: Mechanisms of modulation of experimental autoimmune encephalomyelitis by chronic Trichinella spiralis infection in Dark Agouti rats. Parasite Immunol 2010, 32, 450–459.Gruden-MovsesijanA.IlicN.Mostarica-StojkovicM.Stosic-GrujicicS.MilicM.Sofronic-MilosavljevicL.Mechanisms of modulation of experimental autoimmune encephalomyelitis by chronic Trichinella spiralis infection in Dark Agouti ratsParasite Immunol20103245045910.1111/j.1365-3024.2010.01207.xSearch in Google Scholar

Halliday A., Turner J.D., Guimarães A., Bates P.A., Taylor M.J.: The TLR2/6 ligand PAM2CSK4 is a Th2 polarizing adjuvant in Leishmania major and Brugia malayi murine vaccine models. Parasit Vectors 2016, 9, 96.HallidayA.TurnerJ.D.GuimarãesA.BatesP.A.TaylorM.J.The TLR2/6 ligand PAM2CSK4 is a Th2 polarizing adjuvant in Leishmania major and Brugia malayi murine vaccine modelsParasit Vectors201699610.1186/s13071-016-1381-0Search in Google Scholar

Han C., Yu J., Zhang Z., Zhai P., Zhang Y., Meng S., Yu Y., Li X., Song M.: Immunomodulatory effects of Trichinella spiralis excretory-secretory antigens on macrophages. Exp Parasitol. 2019, 196, 68–72.HanC.YuJ.ZhangZ.ZhaiP.ZhangY.MengS.YuY.LiX.SongM.Immunomodulatory effects of Trichinella spiralis excretory-secretory antigens on macrophagesExp Parasitol2019196687210.1016/j.exppara.2018.10.001Search in Google Scholar

Ilic N., Gruden-Movsesijan A., Cvetkovic J., Tomic S., Vucevic D.B., Aranzamendi C., Colic M., Pinelli E., Sofronic-Milosavljevic L.: Trichinella spiralis excretory-secretory products induce tolerogenic properties in human dendritic cells via toll-like receptors 2 and 4. Front Immunol 2018, 9, 1–18.IlicN.Gruden-MovsesijanA.CvetkovicJ.TomicS.VucevicD.B.AranzamendiC.ColicM.PinelliE.Sofronic-MilosavljevicL.Trichinella spiralis excretory-secretory products induce tolerogenic properties in human dendritic cells via toll-like receptors 2 and 4Front Immunol2018911810.3389/fimmu.2018.00011Search in Google Scholar

Ilic N., Gruden-Movsesijan A., Sofronic-Milosavljevic L.: Trichinella spiralis shaping the immune response. Immunol Res 2012, 52, 111–119.IlicN.Gruden-MovsesijanA.Sofronic-MilosavljevicL.Trichinella spiralis shaping the immune responseImmunol Res20125211111910.1007/s12026-012-8287-5Search in Google Scholar

Kim S., Park M.K., Yu H.S.: Toll-like receptor gene expression during Trichinella spiralis infection. Korean J Parasitol 2015, 53, 431–438.KimS.ParkM.K.YuH.S.Toll-like receptor gene expression during Trichinella spiralis infectionKorean J Parasitol20155343143810.3347/kjp.2015.53.4.431Search in Google Scholar

Krishnegowda G., Hajjar A.M., Zhu J., Douglass E.J., Uematsu S., Akira S., Woods A.S., Gowda D.C.: Induction of proinflammatory responses in macrophages by the glycosylphosphatidylinositols of Plasmodium falciparum cell signaling receptors, glycosylphosphatidylinositol (GPI) structural requirement, and regulation of GPI activity. J Biol Chem 2005, 280, 8606–8616.KrishnegowdaG.HajjarA.M.ZhuJ.DouglassE.J.UematsuS.AkiraS.WoodsA.S.GowdaD.C.Induction of proinflammatory responses in macrophages by the glycosylphosphatidylinositols of Plasmodium falciparum cell signaling receptors, glycosylphosphatidylinositol (GPI) structural requirement, and regulation of GPI activityJ Biol Chem20052808606861610.1074/jbc.M413541200Search in Google Scholar

Magalhaes K., Almeida P.E., Atella G., Maya-Monteiro C.M., Castro-Faria-Neto H., Pelajo-Machado M., Lenzi H.L., Bozza M.T., Bozza P.T.: Schistosomal-derived lysophosphatidylcholine are involved in eosinophil activation and recruitment through Toll-like receptor-2-dependent mechanisms. J Infect Dis 2010, 202, 1369–1379.MagalhaesK.AlmeidaP.E.AtellaG.Maya-MonteiroC.M.Castro-Faria-NetoH.Pelajo-MachadoM.LenziH.L.BozzaM.T.BozzaP.T.Schistosomal-derived lysophosphatidylcholine are involved in eosinophil activation and recruitment through Toll-like receptor-2-dependent mechanismsJ Infect Dis20102021369137910.1086/656477Search in Google Scholar

Mun H., Aosai F., Norose K., Chen M., Piao L., Takeuchi O., Akira S., Ishikura H., Yana A.: TLR2 as an essential molecule for protective immunity against Toxoplasma gondii infection. Int Immunol 2003, 15, 1081–1087.MunH.AosaiF.NoroseK.ChenM.PiaoL.TakeuchiO.AkiraS.IshikuraH.YanaA.TLR2 as an essential molecule for protective immunity against Toxoplasma gondii infectionInt Immunol2003151081108710.1093/intimm/dxg108Search in Google Scholar

Ortega-Cava C., Ishihara S., Rumi M., Kawashima K., Ishimura N., Kazumori H., Udagawa J., Kadowaki Y., Kinoshita Y.: Strategic compartmentalization of Toll-like receptor 4 in the mouse gut. J Immunol 2003, 170, 3977–3985.Ortega-CavaC.IshiharaS.RumiM.KawashimaK.IshimuraN.KazumoriH.UdagawaJ.KadowakiY.KinoshitaY.Strategic compartmentalization of Toll-like receptor 4 in the mouse gutJ Immunol20031703977398510.4049/jimmunol.170.8.3977Search in Google Scholar

Ozinsky A., Underhill D.M., Fontenot J.D., Hajjar A.M., Smith K.D., Wilson C.B., Schroeder L., Aderem A.: The repertoire for pattern recognition of pathogens by the innate immune system is defined by cooperation between toll-like receptors. Proc Natl Acad Sci U S A. 2000, 5, 97, 13766–13771.OzinskyA.UnderhillD.M.FontenotJ.D.HajjarA.M.SmithK.D.WilsonC.B.SchroederL.AderemA.The repertoire for pattern recognition of pathogens by the innate immune system is defined by cooperation between toll-like receptorsProc Natl Acad Sci U S A2000597137661377110.1073/pnas.250476497Search in Google Scholar

Pinlaor S., Tada-Oikawa S., Hiraku Y., Pinlaour P., Ma N., Sithithaworn P., Kawanishi S.: Opistorchis viverrini antigen induces the expression Toll-like receptor 2 in macrophage RAW cell line. Int J Parasitol 2005, 35, 591–596.PinlaorS.Tada-OikawaS.HirakuY.PinlaourP.MaN.SithithawornP.KawanishiS.Opistorchis viverrini antigen induces the expression Toll-like receptor 2 in macrophage RAW cell lineInt J Parasitol20053559159610.1016/j.ijpara.2005.02.003Search in Google Scholar

Reyes J.L., González M.I., Ledesma-Soto Y., Satoskar A.R., Terrazas L.I.: TLR2 mediates immunity to experimental cysticercosis. Int J Biol Sci 2011, 7, 1323–1333.ReyesJ.L.GonzálezM.I.Ledesma-SotoY.SatoskarA.R.TerrazasL.I.TLR2 mediates immunity to experimental cysticercosisInt J Biol Sci201171323133310.7150/ijbs.7.1323Search in Google Scholar

Roach J.C., Glusman G., Rowen L., Kaur A., Purcell M.K., Smith K.D., Hood L.E., Aderem A.: The evolution of vertebrate Toll-like receptors. Proc Natl Acad Sci USA 2005, 102, 9577–9582.RoachJ.C.GlusmanG.RowenL.KaurA.PurcellM.K.SmithK.D.HoodL.E.AderemA.The evolution of vertebrate Toll-like receptorsProc Natl Acad Sci USA20051029577958210.1073/pnas.0502272102Search in Google Scholar

Ropert C., Gazzinelli R.T.: Regulatory role of Toll-like receptor 2 during infection with Trypanosoma cruzi J Endotoxin Res 2004, 10, 425–430.RopertC.GazzinelliR.T.Regulatory role of Toll-like receptor 2 during infection with Trypanosoma cruziJ Endotoxin Res20041042543010.1177/09680519040100060801Search in Google Scholar

Scalfone L.K., Hendrik J.N., Gagliardo L.F., Cameron J.L., Al-Shokri S., Leifer C.A., Fallon P.G., Appleton J.A.: Participation of MyD88 and interleukin-33 as innate drivers of Th2 immunity to Trichinella spiralis Infect Immun 2013, 81, 1354–1363.ScalfoneL.K.HendrikJ.N.GagliardoL.F.CameronJ.L.Al-ShokriS.LeiferC.A.FallonP.G.AppletonJ.A.Participation of MyD88 and interleukin-33 as innate drivers of Th2 immunity to Trichinella spiralisInfect Immun2013811354136310.1128/IAI.01307-12Search in Google Scholar

Wojtkowiak-Giera A., Derda M., Kolasa-Wołosiu A., Hadaś E., Kosik-Bogacka D., Solarczyk P., Jagodziński P.P., Wandurska-Nowak E.: Toll-like receptors in the brain of mice following infection with Acanthamoeba spp. Parasitol Res 2016, 115, 4335–4344.Wojtkowiak-GieraA.DerdaM.Kolasa-WołosiuA.HadaśE.Kosik-BogackaD.SolarczykP.JagodzińskiP.P.Wandurska-NowakE.Toll-like receptors in the brain of mice following infection with Acanthamoeba sppParasitol Res20161154335434410.1007/s00436-016-5217-9Search in Google Scholar

Wojtkowiak-Giera A., Wandurska-Nowak E., Derda M., Jankowska W., Jagodziński P.P., Hadas E.: Trichinella spiralis impact on the expression of Toll-like receptor 4 (TLR4) gene during the intestinal phase of experimental trichinellosis. J Vet Res 2018, 62, 493–496.Wojtkowiak-GieraA.Wandurska-NowakE.DerdaM.JankowskaW.JagodzińskiP.P.HadasE.Trichinella spiralis impact on the expression of Toll-like receptor 4 (TLR4) gene during the intestinal phase of experimental trichinellosisJ Vet Res20186249349610.2478/jvetres-2018-0063Search in Google Scholar

Wojtkowiak-Giera A., Wandurska-Nowak E., Michalak M., Derda M., Łopaciuch J.: Trichinellosis in mice: effect of albendazole on the glutathione transferase in the intestines. Folia Parasitol 2012, 59, 311–314.Wojtkowiak-GieraA.Wandurska-NowakE.MichalakM.DerdaM.ŁopaciuchJ.Trichinellosis in mice: effect of albendazole on the glutathione transferase in the intestinesFolia Parasitol20125931131410.14411/fp.2012.044Search in Google Scholar

Van der Kleij D., van den Biggelaar A.H., Kruize Y.C., Retra K., Fillie Y., Schmitz M., Kremsner P.G., Tielens A.G., Yazdanbakhsh M.: Responses to Toll-like receptor ligands in children living in areas where schistosome infections are endemic. J Infect Dis 2004, 15, 1044–1051.Vander Kleij D.van denBiggelaar A.H.KruizeY.C.RetraK.FillieY.SchmitzM.KremsnerP.G.TielensA.G.YazdanbakhshM.Responses to Toll-like receptor ligands in children living in areas where schistosome infections are endemicJ Infect Dis2004151044105110.1086/382089Search in Google Scholar

Vanhoutte F., Breuilh L., Fontaine J., Zouain C., Mallevaey T., Vasseur V., Capron M., Goriely S., Faveeul C., Ryffel B., Trottein F.: Toll-like receptor (TLR)2 and TLR3 sensing is required for dendritic cell activation, but dispensable to control Schistosoma mansoni infection and pathology. Microbes Infect 2007, 9, 1606–1613.VanhoutteF.BreuilhL.FontaineJ.ZouainC.MallevaeyT.VasseurV.CapronM.GorielyS.FaveeulC.RyffelB.TrotteinF.Toll-like receptor (TLR)2 and TLR3 sensing is required for dendritic cell activation, but dispensable to control Schistosoma mansoni infection and pathologyMicrobes Infect200791606161310.1016/j.micinf.2007.09.013Search in Google Scholar

Yarovinsky F.: Toll-like receptors and their role in host resistance to Toxoplasma gondii Immunol Lett 2008, 119, 17–21.YarovinskyF.Toll-like receptors and their role in host resistance to Toxoplasma gondiiImmunol Lett2008119172110.2174/978160805148911001010098Search in Google Scholar

Yu Y.R., Deng M.J., Lu W.W., Jia M.Z., Wu W., Qi Y.F.: Systematic cytokine profiles and splenic toll-like receptor expression during Trichinella spiralis infection. Exp Parasitol 2013, 134, 92–101.YuY.R.DengM.J.LuW.W.JiaM.Z.WuW.QiY.F.Systematic cytokine profiles and splenic toll-like receptor expression during Trichinella spiralis infectionExp Parasitol20131349210110.1016/j.exppara.2013.02.014Search in Google Scholar

Zhang M., Gao Y., Du X., Zhang D., Ji M., Wu G.: Toll-like receptor (TLR) 2 and TLR4 deficiencies exert differential in vivo effects against Schistosoma japonicum Parasite Immunol 2011, 33, 199–209.ZhangM.GaoY.DuX.ZhangD.JiM.WuG.Toll-like receptor (TLR) 2 and TLR4 deficiencies exert differential in vivo effects against Schistosoma japonicumParasite Immunol20113319920910.1111/j.1365-3024.2010.01265.xSearch in Google Scholar

Zhang R., Sun Q., Chen Y., Sun X., Gu Y., Zhao Z., Cheng Y., Zhao L., Huang J., Zhan B., Zhu X.: Ts-Hsp70 induces protective immunity against Trichinella spiralis infection in mouse by activating dendritic cells through TLR2 and TLR4. PLoS Negl Trop Dis 2018, 12, 1–19.ZhangR.SunQ.ChenY.SunX.GuY.ZhaoZ.ChengY.ZhaoL.HuangJ.ZhanB.ZhuX.Ts-Hsp70 induces protective immunity against Trichinella spiralis infection in mouse by activating dendritic cells through TLR2 and TLR4PLoS Negl Trop Dis20181211910.1371/journal.pntd.0006502Search in Google Scholar

eISSN:
2450-8608
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Life Sciences, Molecular Biology, Microbiology and Virology, other, Medicine, Veterinary Medicine