Literature DB >> 11698295

Morphologic and functional characterization of granulocytes and macrophages in embryonic and adult zebrafish.

G J Lieschke1, A C Oates, M O Crowhurst, A C Ward, J E Layton.   

Abstract

The zebrafish is a useful model organism for developmental and genetic studies. The morphology and function of zebrafish myeloid cells were characterized. Adult zebrafish contain 2 distinct granulocytes, a heterophil and a rarer eosinophil, both of which circulate and are generated in the kidney, the adult hematopoietic organ. Heterophils show strong histochemical myeloperoxidasic activity, although weaker peroxidase activity was observed under some conditions in eosinophils and erythrocytes. Embryonic zebrafish have circulating immature heterophils by 48 hours after fertilization (hpf). A zebrafish myeloperoxidase homologue (myeloid-specific peroxidase; mpx) was isolated. Phylogenetic analysis suggested it represented a gene ancestral to the mammalian myeloperoxidase gene family. It was expressed in adult granulocytes and in embryos from 18 hpf, first diffusely in the axial intermediate cell mass and then discretely in a dispersed cell population. Comparison of hemoglobinized cell distribution, mpx gene expression, and myeloperoxidase histochemistry in wild-type and mutant embryos confirmed that the latter reliably identified a population of myeloid cells. Studies in embryos after tail transection demonstrated that mpx- and peroxidase-expressing cells were mobile and localized to a site of inflammation, indicating functional capability of these embryonic granulocytes. Embryonic macrophages removed carbon particles from the circulation by phagocytosis. Collectively, these observations have demonstrated the early onset of zebrafish granulopoiesis, have proved that granulocytes circulate by 48 hpf, and have demonstrated the functional activity of embryonic granulocytes and macrophages. These observations will facilitate the application of this genetically tractable organism to the study of myelopoiesis.

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Year:  2001        PMID: 11698295     DOI: 10.1182/blood.v98.10.3087

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  149 in total

1.  Identification of dendritic antigen-presenting cells in the zebrafish.

Authors:  Geanncarlo Lugo-Villarino; Keir M Balla; David L Stachura; Karina Bañuelos; Miriam B F Werneck; David Traver
Journal:  Proc Natl Acad Sci U S A       Date:  2010-08-23       Impact factor: 11.205

2.  Eosinophils in the zebrafish: prospective isolation, characterization, and eosinophilia induction by helminth determinants.

Authors:  Keir M Balla; Geanncarlo Lugo-Villarino; Jan M Spitsbergen; David L Stachura; Yan Hu; Karina Bañuelos; Octavio Romo-Fewell; Raffi V Aroian; David Traver
Journal:  Blood       Date:  2010-08-16       Impact factor: 22.113

Review 3.  Perspectives on antigen presenting cells in zebrafish.

Authors:  Kanako L Lewis; Natasha Del Cid; David Traver
Journal:  Dev Comp Immunol       Date:  2014-03-29       Impact factor: 3.636

4.  Smad1 and Smad5 differentially regulate embryonic hematopoiesis.

Authors:  Lisa J McReynolds; Sunny Gupta; Maria E Figueroa; Mary C Mullins; Todd Evans
Journal:  Blood       Date:  2007-08-29       Impact factor: 22.113

5.  Maternal pak4 expression is required for primitive myelopoiesis in zebrafish.

Authors:  Sheran H W Law; Thomas D Sargent
Journal:  Mech Dev       Date:  2012-09-29       Impact factor: 1.882

6.  Pioneer neutrophils release chromatin within in vivo swarms.

Authors:  Graham J Lieschke; Stephen A Renshaw; Philip M Elks; Hannah M Isles; Catherine A Loynes; Sultan Alasmari; Fu Chuen Kon; Katherine M Henry; Anastasia Kadochnikova; Jack Hales; Clare F Muir; Maria-Cristina Keightley; Visakan Kadirkamanathan; Noémie Hamilton
Journal:  Elife       Date:  2021-07-21       Impact factor: 8.140

7.  Repeated Blood Collection for Blood Tests in Adult Zebrafish.

Authors:  Liqing Zang; Yasuhito Shimada; Yuhei Nishimura; Toshio Tanaka; Norihiro Nishimura
Journal:  J Vis Exp       Date:  2015-08-30       Impact factor: 1.355

8.  SalY of the Streptococcus pyogenes lantibiotic locus is required for full virulence and intracellular survival in macrophages.

Authors:  Hilary A Phelps; Melody N Neely
Journal:  Infect Immun       Date:  2007-06-18       Impact factor: 3.441

9.  Contribution of glutathione peroxidase to the virulence of Streptococcus pyogenes.

Authors:  Audrey Brenot; Katherine Y King; Blythe Janowiak; Owen Griffith; Michael G Caparon
Journal:  Infect Immun       Date:  2004-01       Impact factor: 3.441

Review 10.  Oceans of opportunity: exploring vertebrate hematopoiesis in zebrafish.

Authors:  Kelli J Carroll; Trista E North
Journal:  Exp Hematol       Date:  2014-05-09       Impact factor: 3.084

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