A star with stripes: zebrafish as an infection model.
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[1] H. Wolf‐Watz,et al. Visualisation of zebrafish infection by GFP-labelled Vibrio anguillarum. , 2004, Microbial pathogenesis.
[2] J. Gordon,et al. Gnotobiotic zebrafish reveal evolutionarily conserved responses to the gut microbiota. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[3] M. Kasahara,et al. On the origins of the adaptive immune system: novel insights from invertebrates and cold-blooded vertebrates. , 2004, Trends in immunology.
[4] M. Caparon,et al. Contribution of Glutathione Peroxidase to the Virulence of Streptococcus pyogenes , 2004, Infection and Immunity.
[5] R. Savan,et al. Cloning, characterization and expression analysis of interleukin-10 from the common carp, Cyprinus carpio L. , 2003, European journal of biochemistry.
[6] Edwin Cuppen,et al. Efficient target-selected mutagenesis in zebrafish. , 2003, Genome research.
[7] J. Hoffmann,et al. The immune response of Drosophila , 2003, Nature.
[8] S. Takeshita,et al. Mycobacterium marinum Escapes from Phagosomes and Is Propelled by Actin-based Motility , 2003, The Journal of experimental medicine.
[9] W. Batts,et al. Susceptibility of zebrafish (Danio rerio) to a model pathogen, spring viremia of carp virus. , 2003, Comparative medicine.
[10] Wilbert Bitter,et al. Zebrafish embryos as a model host for the real time analysis of Salmonella typhimurium infections , 2003, Cellular microbiology.
[11] P. Jagadeeswaran,et al. Zebrafish-Mycobacterium marinum model for mycobacterial pathogenesis. , 2003, FEMS microbiology letters.
[12] Yuzuru Suzuki,et al. Identification and characterization of Fugu orthologues of mammalian interleukin-12 subunits , 2003, Immunogenetics.
[13] J. Klein,et al. Genes encoding putative natural killer cell C-type lectin receptors in teleostean fishes , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[14] J. Meseguer,et al. A mannose-receptor is possibly involved in the phagocytosis of Saccharomyces cerevisiae by seabream (Sparus aurata L.) leucocytes. , 2003, Fish & shellfish immunology.
[15] L. Noble,et al. The expression of immune-regulatory genes in rainbow trout, Oncorhynchus mykiss, during a natural outbreak of proliferative kidney disease (PKD) , 2003, Parasitology.
[16] R. Jagus,et al. Characterization of rainbow trout and zebrafish eukaryotic initiation factor 2alpha and its response to endoplasmic reticulum stress and IPNV infection. , 2003, Developmental and comparative immunology.
[17] Carol Kim,et al. Molecular and Functional Analysis of an Interferon Gene from the Zebrafish, Danio rerio , 2003, Journal of Virology.
[18] G. Kurath,et al. Spring viremia of carp (SVC). , 2002, Diseases of aquatic organisms.
[19] L. Ramakrishnan,et al. Real-time visualization of mycobacterium-macrophage interactions leading to initiation of granuloma formation in zebrafish embryos. , 2002, Immunity.
[20] C. Amemiya,et al. Zebrafish as an immunological model system. , 2002, Microbes and infection.
[21] J. Pfeifer,et al. Streptococcus-Zebrafish Model of Bacterial Pathogenesis , 2002, Infection and Immunity.
[22] John D Lambris,et al. The complement system in teleosts. , 2002, Fish & shellfish immunology.
[23] K. Barker,et al. Channel catfish cytotoxic cells: a mini-review. , 2002, Developmental and comparative immunology.
[24] J. Ewbank. Tackling both sides of the host-pathogen equation with Caenorhabditis elegans. , 2002, Microbes and infection.
[25] B. Lemaître,et al. How Drosophila combats microbial infection: a model to study innate immunity and host-pathogen interactions. , 2002, Current opinion in microbiology.
[26] J. Cirillo,et al. Fish Monocytes as a Model for Mycobacterial Host-Pathogen Interactions , 2001, Infection and Immunity.
[27] A. Oates,et al. Morphologic and functional characterization of granulocytes and macrophages in embryonic and adult zebrafish. , 2001, Blood.
[28] M. Kinoshita,et al. The see-through medaka: A fish model that is transparent throughout life , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[29] G. Litman,et al. Novel immune‐type receptor genes , 2001, Immunological reviews.
[30] Sheng Wei,et al. Immune-type receptor genes in zebrafish share genetic and functional properties with genes encoded by the mammalian leukocyte receptor cluster , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[31] J. Fox,et al. Diagnosis and management of atypical Mycobacterium spp. infections in established laboratory zebrafish (Brachydanio rerio) facilities. , 2000, Comparative medicine.
[32] L. Zon,et al. Effects of infectious hematopoietic necrosis virus and infectious pancreatic necrosis virus infection on hematopoietic precursors of the zebrafish. , 2000, Blood cells, molecules & diseases.
[33] J. McPherson,et al. The syntenic relationship of the zebrafish and human genomes. , 2000, Genome research.
[34] M. Schleicher,et al. Dictyostelium discoideum: a new host model system for intracellular pathogens of the genus Legionella , 2000, Cellular microbiology.
[35] J. Saeij,et al. Molecular and functional characterization of a fish inducible-type nitric oxide synthase , 2000, Immunogenetics.
[36] B. Thisse,et al. Ontogeny and behaviour of early macrophages in the zebrafish embryo. , 1999, Development.
[37] S. C. Johnson,et al. Enhancement of anti-Aeromonas salmonicida activity in Atlantic salmon (Salmo salar) macrophages by a mannose-binding lectin. , 1999, Comparative biochemistry and physiology. Part C, Pharmacology, toxicology & endocrinology.
[38] F. Ausubel,et al. Killing of Caenorhabditis elegans by Pseudomonas aeruginosa used to model mammalian bacterial pathogenesis. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[39] J. Rombout,et al. Distribution of macrophages during fish development: an immunohistochemical study in carp (Cyprinus carpio, L.) , 1998, Anatomy and Embryology.
[40] A. Talaat,et al. Goldfish, Carassius auratus, a Novel Animal Model for the Study of Mycobacterium marinumPathogenesis , 1998, Infection and Immunity.
[41] B. Lemaître,et al. Drosophila host defense: differential induction of antimicrobial peptide genes after infection by various classes of microorganisms. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[42] A. Menudier,et al. Comparative virulence between different strains of Listeria in zebrafish (Brachydanio rerio) and mice. , 1996, Pathologie-biologie.
[43] John D Lambris,et al. Multiple forms of complement C3 in trout that differ in binding to complement activators. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[44] A. Meyer,et al. Are all fishes ancient polyploids? , 2004, Journal of Structural and Functional Genomics.
[45] H. Spaink,et al. Expression analysis of the Toll-like receptor and TIR domain adaptor families of zebrafish. , 2004, Molecular immunology.
[46] J. Chluba,et al. Toll-like receptor gene family and TIR-domain adapters in Danio rerio. , 2004, Molecular immunology.
[47] Z. Gong,et al. Development and maturation of the immune system in zebrafish, Danio rerio: a gene expression profiling, in situ hybridization and immunological study. , 2004, Developmental and comparative immunology.
[48] André Catic,et al. The zebrafish as a model organism to study development of the immune system. , 2003, Advances in immunology.
[49] J. Saeij,et al. Molecular and functional characterization of carp TNF: a link between TNF polymorphism and trypanotolerance? , 2003, Developmental and comparative immunology.
[50] K. Barker,et al. Immortal and mortal clonal lymphocyte lines from channel catfish: comparison of telomere length, telomerase activity, tumor suppressor and heat shock protein expression. , 2002, Developmental and comparative immunology.
[51] A. Meng,et al. Double-stranded RNA injection produces nonspecific defects in zebrafish. , 2001, Developmental biology.
[52] G. Warr,et al. Cellular Pathway(S) of Antigen Processing and Presentation in Fish APC: Endosomal Involvement and Cell-Free Antigen Presentation , 1992, Developmental immunology.