Cambier, Ludivine ; Université de Liège - ULiège > Département des maladies infectieuses et parasitaires > Mycologie vétérinaire
Mathy, Anne ; Université de Liège - ULiège > Doct. sc. vété. (Bologne)
Baldo, Aline ; Université de Liège - ULiège > Département des maladies infectieuses et parasitaires > Parasitologie et pathologie des maladies parasitaires
Acorci-Valerio M.J., Bordon-Graciani A.P., Dias-Melicio L.A., De Assis Golim M., Nakaira-Takahagi E., De Campos Soaresa M.V. Role of TLR2 and TLR4 in human neutrophil functions against Paracoccidioides brasiliensis. Scan. J. Immunol. 2010, 71:99-108.
Almeida S.R. Immunology of dermatophytosis. Mycopathologia 2008, 166:277-283.
Bagut, E.T., Baldo, A., Mathy, A., Cambier, L., Antoine, N., Cozma, V., Mignon, B., 2012. Subtilisin Sub3 is involved in adherence of Microsporum canis to human and animal epidermis. Vet. Microb., doi:10.1016/j.vetmic.2012.06.011.
Baldo A., Mathy A., Tabart J., Camponova P., Vermout S., Massart L., Marechal F., Galleni M., Mignon B. Secreted subtilisin Sub3 from Microsporum canis is required for adherence to but not for invasion of the epidermis. Br. J. Dermatol. 2010, 162:990-997.
Bellocchio S., Moretti S., Perruccio K., Fallarino F., Bozza S., Montagnoli C., Mosci P., Lipford G.B., Pitzurra L., Romani L. TLRs govern neutrophil activity in aspergillosis. J. Immunol. 2004, 173:7406-7415.
Bradford M.M. A rapid and sensitive method for the quantification of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 1976, 72:248-254.
Calderon R.A., Hay R.J. Fungicidal activity of human neutrophils and monocytes on dermatophyte fungi, Trichophyton quinckeanum and Trichophyton rubrum. Immunology 1987, 61:289-295.
Calderon R.A. Immunoregulation of dermatophytosis. Crit. Rev. Microbiol. 1989, 16:339-368.
Charmoy M., Brunner-Agten S., Aebischer D., Auderset F., Launois P., Milon G., Proudfoot A.E.I., Tacchini-Cottier F. Neutrophil-derived CCL3 is essential for the rapid recruitment of dendritic cells to the site of Leishmania major inoculation in resistant mice. PLoS Pathog. 2010, 6:e1000755.
Chermette R., Ferreiro L., Guillot J. Dermatophytoses in animals. Mycopathologia 2008, 166:385-405.
Descamps F., Brouta F., Monod M., Zaugg C., Baar D., Losson B., Mignon B. Isolation of a Microsporum canis gene family encoding three subtilisin-like proteases expressed in vivo. J. Invest. Dermatol. 2002, 119:830-835.
Djeu J.Y., Matsushima K., Oppenheim J.J., Shiotsuki K., Blanchard D.K. Functional activation of human neutrophils by recombinant monocyte-derived neutrophil chemotactic factor/IL-8. J. Immunol. 1990, 144:2205-2210.
Dockrell D.H., McGrath E.E., Whyte M.K., Sabroe I. The neutrophil. Immunology of Fungal Infections 2007, 51-73. Springer, The Netherlands. G.D. Brown, M.G. Netea (Eds.).
Fradin C., Mavor A.L., Weindl G., Schaller M., Hanke K., Kaufmann S.H.E., Mollenkopf H., Hube B. The early transcriptional response of human granulocytes to infection with Candida albicans is not essential for killing but reflects cellular communications. Infect. Immun. 2007, 75:1493-1501.
Hay R.J., Calderon R.A., Mackenzie C.D. Experimental dermatophytosis in mice: correlation between light and electron microscopic changes in primary, secondary and chronic infections. Br. J. Exp. Pathol. 1988, 69:703-716.
Heddergott C., Bruns S., Nietzsche S., Leonhardt I., Kurzai O., Kniemeyer O., Brakhage A.A. The Arthroderma benhamiae hydrophobin HypA mediates hydrophobicity and influences recognition by human immune effector cells. Eukaryot. Cell 2012, 11:673-682.
Losse J., Svobodová E., Heyken A., Hube B., Zipfel P.F., Józsi M. Role of pH-regulated antigen 1 of Candida albicans in the fungal recognition and antifungal response of human neutrophils. Mol. Immunol. 2011, 48:2135-2143.
Ma Z., Wang Y., Zhu X., Zhang C., Li S., Jin L., Shen Y., Haapasalo M. Role of polymorphonuclear neutrophils in the clearance of Enterococcus faecalis derived from saliva and infected root canals. J. Endod. 2011, 37:346-352.
Megiovanni A.M., Sanchez F., Robledo-Sarmiento M., Morel C., Gluckman J.C., Boudaly S. Polymorphonuclear neutrophils deliver activation signals and antigenic molecules to dendritic cells: a new link between leukocytes upstream of T lymphocytes. J. Leukoc. Biol. 2006, 79:977-988.
Mignon B., Monod M. Zoonotic infections with dermatophyte fungi. Zoonoses 2011, 838-849. Oxford University Press, Oxford. S.R. Palmer, E.J. Soulsby, P.R. Torgerson, D.W.G. Brown (Eds.).
Mignon B., Tabart J., Baldo A., Mathy A., Losson B., Vermout S. Immunization and dermatophytes. Curr. Opin. Infect. Dis. 2008, 21:134-140.
Monod M. Secreted proteases from dermatophytes. Mycopathologia 2008, 166:285-294.
Nakamura Y., Kano R., Hasegawa A., Watanabe S. Interleukin-8 and tumor necrosis factor alpha production in human epidermal keratinocytes induced by Trichophyton mentagrophytes. Clin. Diagn. Lab. Immunol. 2002, 9:935-937.
Nam Y.H., Min A., Kim S.H., Lee Y.A., Kim K.A., Song K.J., Shin M.H. Leukotriene B 4 receptors BLT1 and BLT2 are involved in interleukin-8 production in human neutrophils induced by Trichomonas vaginalis-derived secretory products. Inflamm. Res. 2012, 1-6.
Saegusa S., Totsuka M., Kaminogawa S., Hosoi T. Saccharomyces cerevisiae and Candida albicans stimulate cytokine secretion from human neutrophil-like HL-60 cells differentiated with retinoic acid or dimethylsulfoxide. Biosci. Biotechnol. Biochem. 2009, 73:2600-2608.
Sawant K.V., McMurray D.N. Guinea pig neutrophils infected with Mycobacterium tuberculosis produce cytokines which activate alveolar macrophages in noncontact cultures. Infect. Immun. 2007, 75:1870-1877.
Schaller M., Boeld U., Oberbauer S., Hamm G., Hube B., Korting H.C. Polymorphonuclear leukocytes (PMNs) induce protective Th1-type cytokine epithelial responses in an in vitro model of oral candidosis. Microbiology 2004, 150:2807-2813.
Shiraki Y., Ishibashi Y., Hiruma M., Nishikawa A., Ikeda S. Cytokine secretion profiles of human keratinocytes during Trichophyton tonsurans and Arthroderma benhamiae infections. J. Med. Microbiol. 2006, 55:1175-1185.
Tabart J., Baldo A., Vermout S., Nusgens B., Lapiere C., Losson B., Mignon B. Reconstructed interfollicular feline epidermis as a model for Microsporum canis dermatophytosis. J. Med. Microbiol. 2007, 56:971-975.
Tani K., Adachi M., Nakamura Y., Kano R., Makimura K., Hasegawa A., Kanda N., Watanabe S. The effect of dermatophytes on cytokine production by human keratinocytes. Arch. Dermatol. Res. 2007, 299:381-387.
Vermout S., Tabart J., Baldo A., Mathy A., Losson B., Mignon B. Pathogenesis of dermatophytosis. Mycopathologia 2008, 166:267-275.
Weitzman I., Summerbell R.C. The dermatophytes. Clin. Microbiol. Rev. 1995, 8:240-259.