Literature DB >> 28129846

Modeling intestinal disorders using zebrafish.

X Zhao1, M Pack1.   

Abstract

Although the zebrafish was initially developed as a model system to study embryonic development, it has gained increasing attention as an advantageous system to investigate human diseases, including intestinal disorders. Zebrafish embryos develop rapidly, and their digestive system is fully functional and visible by 5days post fertilization. There is a large degree of homology between the intestine of zebrafish and higher vertebrate organisms in terms of its cellular composition and function as both a digestive and immune organ. Furthermore, molecular pathways regulating injury and immune responses are highly conserved. In this chapter, we provide an overview of studies addressing developmental and physiological processes relevant to human intestinal disease. These studies include those related to congenital disorders, host-microbiota interactions, inflammatory diseases, motility disorders, and intestinal cancer. We also highlight the utility of zebrafish to functionally validate candidate genes identified through mutational analyses and genome-wide association studies, and discuss methodologies to investigate the intestinal biology that are unique to zebrafish.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Enteric nervous system; Gut motility; Host–microbe interactions; Inflammatory bowel disease; Intestinal epithelial cell; Microbiota

Mesh:

Year:  2017        PMID: 28129846     DOI: 10.1016/bs.mcb.2016.11.006

Source DB:  PubMed          Journal:  Methods Cell Biol        ISSN: 0091-679X            Impact factor:   1.441


  11 in total

Review 1.  A systematic review of advances in intestinal microflora of fish.

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2.  Image velocimetry and spectral analysis enable quantitative characterization of larval zebrafish gut motility.

Authors:  J Ganz; R P Baker; M K Hamilton; E Melancon; P Diba; J S Eisen; R Parthasarathy
Journal:  Neurogastroenterol Motil       Date:  2018-05-02       Impact factor: 3.598

Review 3.  Insane in the apical membrane: Trafficking events mediating apicobasal epithelial polarity during tube morphogenesis.

Authors:  Cayla E Jewett; Rytis Prekeris
Journal:  Traffic       Date:  2018-05-16       Impact factor: 6.215

Review 4.  Enteric nervous system development: what could possibly go wrong?

Authors:  Meenakshi Rao; Michael D Gershon
Journal:  Nat Rev Neurosci       Date:  2018-09       Impact factor: 34.870

Review 5.  Use of Zebrafish in Drug Discovery Toxicology.

Authors:  Steven Cassar; Isaac Adatto; Jennifer L Freeman; Joshua T Gamse; Iñaki Iturria; Christian Lawrence; Arantza Muriana; Randall T Peterson; Steven Van Cruchten; Leonard I Zon
Journal:  Chem Res Toxicol       Date:  2019-11-16       Impact factor: 3.739

6.  Intestinal dysmotility in a zebrafish (Danio rerio) shank3a;shank3b mutant model of autism.

Authors:  David M James; Robert A Kozol; Yuji Kajiwara; Adam L Wahl; Emily C Storrs; Joseph D Buxbaum; Mason Klein; Baharak Moshiree; Julia E Dallman
Journal:  Mol Autism       Date:  2019-01-31       Impact factor: 7.509

7.  celsr1a is essential for tissue homeostasis and onset of aging phenotypes in the zebrafish.

Authors:  Chunmei Li; Carrie Barton; Katrin Henke; Jake Daane; Stephen Treaster; Joana Caetano-Lopes; Robyn L Tanguay; Matthew P Harris
Journal:  Elife       Date:  2020-01-27       Impact factor: 8.140

8.  Zebrafish harbor diverse intestinal macrophage populations including a subset intimately associated with enteric neural processes.

Authors:  Christina L Graves; Angela Chen; Victoria Kwon; Celia E Shiau
Journal:  iScience       Date:  2021-05-03

Review 9.  Schizophrenia, the gut microbiota, and new opportunities from optogenetic manipulations of the gut-brain axis.

Authors:  Enrico Patrono; Jan Svoboda; Aleš Stuchlík
Journal:  Behav Brain Funct       Date:  2021-06-22       Impact factor: 3.759

10.  Effect of TNBS-induced colitis on enteric neuronal subpopulations in adult zebrafish.

Authors:  Leen Uyttebroek; Casper Pype; Guy Hubens; Jean-Pierre Timmermans; Luc Van Nassauw
Journal:  Eur J Histochem       Date:  2020-08-28       Impact factor: 3.188

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