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Pase, L., Layton, J.E., Wittmann, C., Ellett, F., Nowell, C.J., Reyes-Aldasoro, C.C., Varma, S., Rogers, K.L., Hall, C.J., Keightley, M.C., Crosier, P.S., Grabher, C., Heath, J.K., Renshaw, S.A., and Lieschke, G.J. (2012) Neutrophil-Delivered Myeloperoxidase Dampens the Hydrogen Peroxide Burst after Tissue Wounding in Zebrafish. Current biology : CB. 22(19):1818-1824
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Prajsnar, T.K., Hamilton, R., Garcia-Lara, J., McVicker, G., Williams, A., Boots, M., Foster, S.J., and Renshaw, S.A. (2012) A privileged intraphagocyte niche is responsible for disseminated infection of Staphylococcus aureus in a zebrafish model. Cellular Microbiology. 14(10):1600-1619
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Progatzky, F., Taylor, H., Bugeon, L., Cassidy, S., Radbruch, A., Dallman, M.J., and Lamb, J.R. (2012) The role of Nfil3 in zebrafish hematopoiesis. Developmental and comparative immunology. 38(1):187-192
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Rendueles, O., Ferrières, L., Frétaud, M., Bégaud, E., Herbomel, P., Levraud, J.P., and Ghigo, J.M. (2012) A new zebrafish model of Oro-intestinal pathogen colonization reveals a key role for adhesion in protection by probiotic bacteria. PLoS pathogens. 8(7):e1002815
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Sarris, M., Masson, J.B., Maurin, D., Van der Aa, L.M., Boudinot, P., Lortat-Jacob, H., and Herbomel, P. (2012) Inflammatory Chemokines Direct and Restrict Leukocyte Migration within Live Tissues as Glycan-Bound Gradients. Current biology : CB. 22(24):2375-2382
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Taormina, M.J., Jemielita, M., Stephens, W.Z., Burns, A.R., Troll, J.V., Parthasarathy, R., and Guillemin, K. (2012) Investigating bacterial-animal symbioses with light sheet microscopy. The Biological bulletin. 223(1):7-20
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Yang, C.T., Cambier, C.J., Davis, J.M., Hall, C.J., Crosier, P.S., and Ramakrishnan, L. (2012) Neutrophils exert protection in the early tuberculous granuloma by oxidative killing of mycobacteria phagocytosed from infected macrophages. Cell Host & Microbe. 12(3):301-312
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Bugeon, L., Taylor, H.B., Progatzky, F., Lin, M.I., Ellis, C.D., Welsh, N., Smith, E., Vargesson, N., Gray, C., Renshaw, S.A., Chico, T.J., Zon, L., Lamb, J., and Dallman, M.J. (2011) The NOTCH pathway contributes to cell fate decisions in myelopoiesis. Haematologica. 96(12):1753-60
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Carvalho, R., de Sonneville, J., Stockhammer, O.W., Savage, N.D., Veneman, W.J., Ottenhoff, T.H., Dirks, R.P., Meijer, A.H., and Spaink, H.P. (2011) A high-throughput screen for tuberculosis progression. PLoS One. 6(2):e16779
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Elks, P.M., van Eeden, F.J., Dixon, G., Wang, X., Reyes-Aldasoro, C.C., Ingham, P.W., Whyte, M.K., Walmsley, S.R., and Renshaw, S.A. (2011) Activation of hypoxia-inducible factor-1α (Hif-1α) delays inflammation resolution by reducing neutrophil apoptosis and reverse migration in a zebrafish inflammation model. Blood. 118(3):712-22
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Gray, C., Loynes, C.A., Whyte, M.K., Crossman, D.C., Renshaw, S.A., and Chico, T.J. (2011) Simultaneous intravital imaging of macrophage and neutrophil behaviour during inflammation using a novel transgenic zebrafish. Thrombosis and haemostasis. 105(5):811-819
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Kent, M.L., Buchner, C., Watral, V.G., Sanders, J.L., Ladu, J., Peterson, T.S., and Tanguay, R.L. (2011) Development and maintenance of a specific pathogen-free (SPF) zebrafish research facility for Pseudoloma neurophilia. Diseases of aquatic organisms. 95(1):73-79
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López-Muñoz, A., Sepulcre, M.P., Roca, F.J., Figueras, A., Meseguer, J., and Mulero, V. (2011) Evolutionary conserved pro-inflammatory and antigen presentation functions of zebrafish IFNγ revealed by transcriptomic and functional analysis. Molecular immunology. 48(9-10):1073-1083
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Oehlers, S.H., Flores, M.V., Okuda, K.S., Hall, C.J., Crosier, K.E., and Crosier, P.S. (2011) A chemical enterocolitis model in zebrafish larvae that is dependent on microbiota and responsive to pharmacological agents. Developmental Dynamics : an official publication of the American Association of Anatomists. 240(1):288-298
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Stachura, D.L., Svoboda, O., Lau, R.P., Balla, K.M., Zon, L.I., Bartunek, P., and Traver, D. (2011) Clonal analysis of hematopoietic progenitor cells in the zebrafish. Blood. 118(5):1274-82
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Balla, K.M., Lugo-Villarino, G., Spitsbergen, J.M., Stachura, D.L., Hu, Y., Banuelos, K., Romo-Fewell, O., Aroian, R.V., and Traver, D. (2010) Eosinophils in the zebrafish: prospective isolation, characterization, and eosinophilia induction by helminth determinants. Blood. 116(19):3944-3954
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d'Alencon, C.A., Pena, O.A., Wittmann, C., Gallardo, V.E., Jones, R.A., Loosli, F., Liebel, U., Grabher, C., and Allende, M.L. (2010) A high-throughput chemically induced inflammation assay in zebrafish. BMC Biology. 8:151
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Loynes, C.A., Martin, J.S., Robertson, A., Trushell, D.M., Ingham, P.W., Whyte, M.K., and Renshaw, S.A. (2010) Pivotal Advance: Pharmacological manipulation of inflammation resolution during spontaneously resolving tissue neutrophilia in the zebrafish. Journal of Leukocyte Biology. 87(2):203-212
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Lugo-Villarino, G., Balla, K.M., Stachura, D.L., Bañuelos, K., Werneck, M.B., and Traver, D. (2010) Identification of dendritic antigen-presenting cells in the zebrafish. Proceedings of the National Academy of Sciences of the United States of America. 107(36):15850-15855
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McLeish, J.A., Chico, T.J., Taylor, H.B., Tucker, C., Donaldson, K., and Brown, S.B. (2010) Skin exposure to micro- and nano-particles can cause haemostasis in zebrafish larvae. Thrombosis and haemostasis. 103(4):797-807
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Singer, J.T., Phennicie, R.T., Sullivan, M.J., Porter, L.A., Shaffer, V.J., and Kim, C.H. (2010) Broad-host-range Plasmids for Red Fluorescent Protein Labeling of Gram-negative Bacteria for Use in the Zebrafish Model System. Applied and environmental microbiology. 76(11):3467-3474
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Yoo, S.K., Deng, Q., Cavnar, P.J., Wu, Y.I., Hahn, K.M., and Huttenlocher, A. (2010) Differential Regulation of Protrusion and Polarity by PI(3)K during Neutrophil Motility in Live Zebrafish. Developmental Cell. 18(2):226-236
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Brannon, M.K., Davis, J.M., Mathias, J.R., Hall, C.J., Emerson, J.C., Crosier, P.S., Huttenlocher, A., Ramakrishnan, L., and Moskowitz, S.M. (2009) Pseudomonas aeruginosa Type III secretion system interacts with phagocytes to modulate systemic infection of zebrafish embryos. Cellular Microbiology. 11(5):755-768
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Brugman, S., Liu, K.Y., Lindenbergh-Kortleve, D., Samsom, J.N., Furuta, G.T., Renshaw, S.A., Willemsen, R., and Nieuwenhuis, E.E. (2009) Oxazolone-induced enterocolitis in zebrafish depends on the composition of the intestinal microbiota. Gastroenterology. 137(5):1757.e1-1767.e1
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Dodd, M.E., Hatzold, J., Mathias, J.R., Walters, K.B., Bennin, D.A., Rhodes, J., Kanki, J.P., Look, A.T., Hammerschmidt, M., and Huttenlocher, A. (2009) The ENTH domain protein Clint1 is required for epidermal homeostasis in zebrafish. Development (Cambridge, England). 136(15):2591-2600
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Hall, C., Flores, M.V., Chien, A., Davidson, A., Crosier, K., and Crosier, P. (2009) Transgenic zebrafish reporter lines reveal conserved Toll-like receptor signaling potential in embryonic myeloid leukocytes and adult immune cell lineages. Journal of Leukocyte Biology. 85(5):751-765
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Mathias, J.R., Dodd, M.E., Walters, K.B., Yoo, S.K., Ranheim, E.A., and Huttenlocher, A. (2009) Characterization of Zebrafish Larval Inflammatory Macrophages. Developmental and comparative immunology. 33(11):1212-1217
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Pase, L., Layton, J.E., Kloosterman, W.P., Carradice, D., Waterhouse, P.M., and Lieschke, G.J. (2009) miR-451 regulates zebrafish erythroid maturation in vivo via its target gata2. Blood. 113(8):1794-1804
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Walters, K.B., Dodd, M.E., Mathias, J.R., Gallagher, A.J., Bennin, D.A., Rhodes, J., Kanki, J.P., Look, A.T., Grinblat, Y., and Huttenlocher, A. (2009) Muscle degeneration and leukocyte infiltration caused by mutation of zebrafish fad24. Developmental Dynamics : an official publication of the American Association of Anatomists. 238(1):86-99
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Kaplan, J.E., Chrenek, R.D., Morash, J.G., Ruksznis, C.M., and Hannum, L.G. (2008) Rhythmic patterns in phagocytosis and the production of reactive oxygen species by zebrafish leukocytes. Comparative biochemistry and physiology. Part A, Molecular & integrative physiology. 151(4):726-730
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Roca, F.J., Mulero, I., López-Muñoz, A., Sepulcre, M.P., Renshaw, S.A., Meseguer, J., and Mulero, V. (2008) Evolution of the Inflammatory Response in Vertebrates: Fish TNF-{alpha} Is a Powerful Activator of Endothelial Cells but Hardly Activates Phagocytes. Journal of immunology (Baltimore, Md. : 1950). 181(7):5071-5081
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Mathew, L.K., Sengupta, S., Kawakami, A., Andreasen, E.A., Löhr, C.V., Loynes, C.A., Renshaw, S.A., Peterson, R.T., and Tanguay, R.L. (2007) Unraveling tissue regeneration pathways using chemical genetics. The Journal of biological chemistry. 282(48):35202-35210
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Mathias, J.R., Dodd, M.E., Walters, K.B., Rhodes, J., Kanki, J.P., Look, A.T., and Huttenlocher, A. (2007) Live imaging of chronic inflammation caused by mutation of zebrafish Hai1. Journal of Cell Science. 120(19):3372-3383
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Mathias, J.R., Perrin, B.J., Liu, T.X., Kanki, J., Look, A.T., and Huttenlocher, A. (2006) Resolution of inflammation by retrograde chemotaxis of neutrophils in transgenic zebrafish. Journal of Leukocyte Biology. 80(6):1281-1288
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Renshaw, S.A., Loynes, C.A., Trushell, D.M., Elworthy, S., Ingham, P.W., and Whyte, M.K. (2006) A transgenic zebrafish model of neutrophilic inflammation. Blood. 108(13):3976-3978
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