Literature DB >> 25742284

Mechanical vessel injury in zebrafish embryos.

Hilary Clay1, Shaun R Coughlin2.   

Abstract

Zebrafish (Danio rerio) embryos have proven to be a powerful model for studying a variety of developmental and disease processes. External development and optical transparency make these embryos especially amenable to microscopy, and numerous transgenic lines that label specific cell types with fluorescent proteins are available, making the zebrafish embryo an ideal system for visualizing the interaction of vascular, hematopoietic, and other cell types during injury and repair in vivo. Forward and reverse genetics in zebrafish are well developed, and pharmacological manipulation is possible. We describe a mechanical vascular injury model using micromanipulation techniques that exploits several of these features to study responses to vascular injury including hemostasis and blood vessel repair. Using a combination of video and timelapse microscopy, we demonstrate that this method of vascular injury results in measurable and reproducible responses during hemostasis and wound repair. This method provides a system for studying vascular injury and repair in detail in a whole animal model.

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Year:  2015        PMID: 25742284      PMCID: PMC4354638          DOI: 10.3791/52460

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  33 in total

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Authors:  David Traver; Barry H Paw; Kenneth D Poss; W Todd Penberthy; Shuo Lin; Leonard I Zon
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2.  In vivo imaging of embryonic vascular development using transgenic zebrafish.

Authors:  Nathan D Lawson; Brant M Weinstein
Journal:  Dev Biol       Date:  2002-08-15       Impact factor: 3.582

Review 3.  The zebrafish as a model organism to study development of the immune system.

Authors:  David Traver; Philippe Herbomel; E Elizabeth Patton; Ryan D Murphey; Jeffrey A Yoder; Gary W Litman; André Catic; Chris T Amemiya; Leonard I Zon; Nikolaus S Trede
Journal:  Adv Immunol       Date:  2003       Impact factor: 3.543

4.  Cellular and molecular analyses of vascular tube and lumen formation in zebrafish.

Authors:  Suk-Won Jin; Dimitris Beis; Tracy Mitchell; Jau-Nian Chen; Didier Y R Stainier
Journal:  Development       Date:  2005-10-26       Impact factor: 6.868

5.  Inflammation and wound repair.

Authors:  Danny C LeBert; Anna Huttenlocher
Journal:  Semin Immunol       Date:  2014-05-19       Impact factor: 11.130

6.  A hemophilia model in zebrafish: analysis of hemostasis.

Authors:  P Jagadeeswaran; Y C Liu
Journal:  Blood Cells Mol Dis       Date:  1997       Impact factor: 3.039

7.  Analysis of blood coagulation in the zebrafish.

Authors:  P Jagadeeswaran; J P Sheehan
Journal:  Blood Cells Mol Dis       Date:  1999 Jun-Aug       Impact factor: 3.039

8.  Targeted mutagenesis of zebrafish antithrombin III triggers disseminated intravascular coagulation and thrombosis, revealing insight into function.

Authors:  Yang Liu; Colin A Kretz; Morgan L Maeder; Catherine E Richter; Philip Tsao; Andy H Vo; Michael C Huarng; Thomas Rode; Zhilian Hu; Rohit Mehra; Steven T Olson; J Keith Joung; Jordan A Shavit
Journal:  Blood       Date:  2014-04-29       Impact factor: 22.113

Review 9.  Zebrafish: a genetic model for hemostasis and thrombosis.

Authors:  P Jagadeeswaran; M Gregory; K Day; M Cykowski; B Thattaliyath
Journal:  J Thromb Haemost       Date:  2005-01       Impact factor: 5.824

Review 10.  The zebrafish as a model for complex tissue regeneration.

Authors:  Matthew Gemberling; Travis J Bailey; David R Hyde; Kenneth D Poss
Journal:  Trends Genet       Date:  2013-08-06       Impact factor: 11.639

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  2 in total

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Review 2.  Zebrafish for Personalized Regenerative Medicine; A More Predictive Humanized Model of Endocrine Disease.

Authors:  Babak Arjmand; Akram Tayanloo-Beik; Najmeh Foroughi Heravani; Setareh Alaei; Moloud Payab; Sepideh Alavi-Moghadam; Parisa Goodarzi; Mahdi Gholami; Bagher Larijani
Journal:  Front Endocrinol (Lausanne)       Date:  2020-07-17       Impact factor: 5.555

  2 in total

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