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Toll-like receptor 2 (TLR2) plays a role in controlling cutaneous leishmaniasis in vivo, but does not require activation by parasite lipophosphoglycanHalliday, A., Bates, P.A., Chance, M.L., Taylor, M.J. 6/10/2016 In: Parasites and Vectors. 9, 1, 14 p.
Salivary gland proteome during adult development and after blood feeding of female anopheles dissidens mosquitoes (Diptera Culicidae)Phattanawiboon, B., Jariyapan, N., Mano, C., Roytrakul, S., Paemanee, A., Sor-Suwan, S., Sriwichai, P., Saeung, A., Bates, P.A. 26/09/2016 In: PLoS ONE. 11, 9, 14 p.
Characterization of a midgut mucin-like glycoconjugate of Lutzomyia longipalpis with a potential role in Leishmania attachmentMy?ková, J., Dostálová, A., Pěni?ková, L., Halada, P., Bates, P.A., Volf, P. 25/07/2016 In: Parasites and Vectors. 9, 1, 10 p.
The TLR2/6 ligand PAM2CSK4 is a Th2 polarizing adjuvant in Leishmania major and Brugia malayi murine vaccine modelsHalliday, A., Turner, J.D., Guimar?es, A., Bates, P.A., Taylor, M.J. 20/02/2016 In: Parasites and Vectors. 9, 9 p.
The biting midge Culicoides sonorensis (Diptera Ceratopogonidae) is capable of developing late stage infections of Leishmania enriettiiSeblova, V., Sadlova, J., Vojtkova, B., Votypka, J., Carpenter, S., Bates, P.A., Volf, P. 14/09/2015 In: PLoS Neglected Tropical Diseases. 9, 9, 15 p.
Chronic generalized fibrotic skin lesions from disseminated leishmaniasis caused by Leishmania martiniquensis in two HIV-infected patients from northern ThailandChiewchanvit, S., Tovanabutra, N., Jariyapan, N., Bates, M.D., Mahanupab, P., Chuamanochan, M., Tantiworawit, A., Bates, P.A. 09/2015 In: British Journal of Dermatology. 173, 3, p. 663-670. 8 p.
First isolation of a new species of Leishmania responsible for human cutaneous leishmaniasis in Ghana and classification in the Leishmania enriettii complexKwakye-Nuako, G., Mosore, M., Duplessis, C., Bates, M., Puplampu, N., Mensah-Attipoe, I., Desewu, K., Afegbe, G., Asmah, R., Jamjoom, M., Ayeh-Kumi, P., Boakye, D., Bates, P. 09/2015 In: International Journal for Parasitology. 45, 11, p. 679-684. 6 p.
A unique, highly conserved secretory invertase is differentially expressed by promastigote developmental forms of all species of the human pathogen, LeishmaniaLyda, T.A., Joshi, M.B., Andersen, J.F., Kelada, A.Y., Owings, J.P., Bates, P.A., Dwyer, D.M. 06/2015 In: Molecular and Cellular Biochemistry. 404, 1-2, p. 53-77. 25 p.
Recent advances in phlebotomine sand fly research related to leishmaniasis controlBates, P.A., Depaquit, J., Galati, E.A., Kamhawi, S., Maroli, M., McDowell, M.A., Picado, A., Ready, P.D., Salomón, O.D., Shaw, J.J., Traub-Csek?, Y.M., Warburg, A. 27/02/2015 In: Parasites and Vectors. 8, 1, 8 p.
First isolation of Leishmania from Northern Thailand: case report, identification as Leishmania martiniquensis and phylogenetic position within the Leishmania enriettii complexPothirat, T., Tantiworawit, A., Chaiwarith, R., Jariyapan, N., Wannasan, A., Siriyasatien, P., Supparatpinyo, K., Bates, M.D., Kwakye-Nuako, G., Bates, P.A. 12/2014 In: PLoS Neglected Tropical Diseases. 8, 12, 8 p.
Exsheathment and midgut invasion of nocturnally subperiodic Brugia malayi microfilariae in a refractory vector, Aedes aegypti (Thailand strain)Intakhan, N., Jariyapan, N., Sor-Suwan, S., Phattanawiboon, B., Taai, K., Chanmol, W., Saeung, A., Choochote, W., Bates, P.A. 11/2014 In: Parasitology Research. 113, 11, p. 4141-4149. 9 p.
Colonisation resistance in the sand fly gut: Leishmania protects Lutzomyia longipalpis from bacterial infectionSant'Anna, M.R.V., Diaz-Albiter, H., Aguiar-Martins, K., Al Salem, W.S., Cavalcante, R.R., Dillon, V.M., Bates, P.A., Genta, F.A., Dillon, R.J. 23/07/2014 In: Parasites and Vectors. 7, 1, 10 p.
Identification of salivary gland proteins depleted after blood feeding in the malaria vector anopheles campestris-like mosquitoes (Diptera: Culicidae)Sor-Suwan, S., Jariyapan, N., Roytrakul, S., Paemanee, A., Phumee, A., Phattanawiboon, B., Intakhan, N., Chanmol, W., Bates, P.A., Saeung, A., Choochote, W. 5/03/2014 In: PLoS ONE. 9, 3, 9 p.
Midgut ultrastructure of fourth instar Ochlerotatus togoi (Diptera: Culicidae)Intakhan, N., Jariyapan, N., Chanmol, W., Sor-Suwan, S., Phattanawiboon, B., Saeung, A., Choochote, W., Bates, P. 2014 In: Southeast Asian Journal of Tropical Medicine and Public Health. 45, 6, p. 1301-1315. 15 p.
The role of surface glycoconjugates in Leishmania midgut attachment examined by competitive binding assays and experimental development in sand fliesJecna, L., Dostalova, A., Wilson, R., Seblova, V., Chang, K., Bates, P.A., Volf, P. 07/2013 In: Parasitology. 140, 8, p. 1026-1032. 7 p.
Human Chemokines as Antimicrobial Peptides with Direct Parasiticidal Effect on Leishmania mexicana In VitroS?birk, S.K., M?rgelin, M., Egesten, A., Bates, P., Shannon, O., Collin, M. 22/03/2013 In: PLoS ONE. 8, 3
The characterization of the Phlebotomus papatasi transcriptomeAbrudan, J., Ramalho-Ortig?o, M., O'Neil, S., Stayback, G., Wadsworth, M., Bernard, M., Shoue, D., Emrich, S., Lawyer, P., Kamhawi, S., Rowton, E.D., Lehane, M.J., Bates, P.A., Valenzeula, J.G., Tomlinson, C., Appelbaum, E., Moeller, D., Thiesing, B., Dillon, R., Clifton, S., Lobo, N.F., Wilson, R.K., Collins, F.H., McDowell, M.A. 7/02/2013 In: Insect Molecular Biology. 22, 2, p. 211-232. 22 p.
Salivary gland proteome of the human malaria vector, Anopheles campestris-like (Diptera Culicidae)Sor-Suwan, S., Jariyapan, N., Roytrakul, S., Paemanee, A., Saeung, A., Thongsahuan, S., Phattanawiboon, B., Bates, P.A., Poovorawan, Y., Choochote, W. 2013 In: Parasitology Research. 112, 3, p. 1065-1075. 11 p.
Caspar-like gene depletion reduces Leishmania infection in sand fly host Lutzomyia longipalpisTelleria, E.L., Sant'Anna, M.R.V., Ortig?o-Farias, J.R., Pitaluga, A.N., Dillon, V.M., Bates, P.A., Traub-Csek?, Y.M., Dillon, R.J. 13/04/2012 In: Journal of Biological Chemistry. 287, 16, p. 12985-12993. 9 p.
Investigation of the bacterial communities associated with females of Lutzomyia sand fly species from South AmericaSant'anna, M.R.V., Darby, A.C., Brazil, R.P., Montoya-Lerma, J., Dillon, V.M., Bates, P.A., Dillon, R.J. 2012 In: PLoS ONE. 7, 8, p. e42531. 10 p.
Chromosome and gene copy number variation allow major structural change between species and strains of LeishmaniaRogers, M.B., Hilley, J.D., Dickens, N.J., Wilkes, J., Bates, P.A., Depledge, D.P., Harris, D., Her, Y., Herzyk, P., Imamura, H., Otto, T.D., Sanders, M., Seeger, K., Dujardin, J., Berriman, M., Smith, D.F., Hertz-Fowler, C., Mottram, J.C. 12/2011 In: Genome Research. 21, 12, p. 2129-2142. 14 p.
Evidence incriminating midges (Diptera: Ceratopogonidae) as potential vectors of Leishmania in AustraliaDougall, A.M., Alexander, B., Holt, D.C., Harris, T., Sultan, A.H., Bates, P.A., Rose, K., Walton, S.F. 04/2011 In: International Journal for Parasitology. 41, 5, p. 571-579. 9 p.
Leishmania species: detection and identification by nested PCR assay from skin samples of rodent reservoirsAkhavan, A.A., Mirhendi, H., Khamesipour, A., Alimohammadian, M.H., Rassi, Y., Bates, P., Kamhawi, S., Valenzuela, J.G., Arandian, M.H., Abdoli, H., Jalali-zand, N., Jafari, R., Shareghi, N., Ghanei, M., Yaghoobi-Ershadi, M.R. 12/2010 In: Experimental Parasitology. 126, 4, p. 552-556. 5 p.
Leishmania infantum proteophosphoglycans regurgitated by the bite of its natural sand fly vector, Lutzomyia longipalpis, promote parasite establishment in mouse skin and skin-distant tissuesRogers, M.E., Corware, K., Müller, I., Bates, P.A. 10/2010 In: Microbes and Infection. 12, 11, p. 875-879. 5 p.
Stage-specific adhesion of Leishmania promastigotes to sand fly midguts assessed using an improved comparative binding assayWilson, R., Bates, M.D., Dostalova, A., Jecna, L., Dillon, R.J., Volf, P., Bates, P.A. 09/2010 In: PLoS Neglected Tropical Diseases. 4, 9