Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.

Barbels are integumentary sense organs found in fishes, reptiles and amphibians. The zebrafish, Danio rerio, develops paired nasal and maxillary barbels approximately one month post fertilization. Small in diameter and optically clear, these adult appendages offer a window on the development, mainte...

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Main Authors: Elizabeth E LeClair, Jacek Topczewski
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2806924?pdf=render
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author Elizabeth E LeClair
Jacek Topczewski
author_facet Elizabeth E LeClair
Jacek Topczewski
author_sort Elizabeth E LeClair
collection DOAJ
description Barbels are integumentary sense organs found in fishes, reptiles and amphibians. The zebrafish, Danio rerio, develops paired nasal and maxillary barbels approximately one month post fertilization. Small in diameter and optically clear, these adult appendages offer a window on the development, maintenance and function of multiple cell types including skin cells, neural-crest derived pigment cells, circulatory vessels, taste buds and sensory nerves. Importantly, barbels in other otophysan fishes (e.g., catfish) are known to regenerate; however, this capacity has not been tested in zebrafish.We describe the development of the maxillary barbel in a staged series of wild type and transgenic zebrafish using light microscopy, histology and immunohistochemistry. By imaging transgenic zebrafish containing fluorescently labeled endothelial cells (Tg(fli1a:EGFP)), we demonstrate that the barbel contains a long ( approximately 2-3 mm) closed-end vessel that we interpret as a large lymphatic. The identity of this vessel was further supported by live imaging of the barbel circulation, extending recent descriptions of the lymphatic system in zebrafish. The maxillary barbel can be induced to regenerate by proximal amputation. After more than 750 experimental surgeries in which approximately 85% of the barbel's length was removed, we find that wound healing is complete within hours, followed by blastema formation ( approximately 3 days), epithelial redifferentiation (3-5 days) and appendage elongation. Maximum regrowth occurs within 2 weeks of injury. Although superficially normal, the regenerates are shorter and thicker than the contralateral controls, have abnormally organized mesenchymal cells and extracellular matrix, and contain prominent connective tissue "stumps" at the plane of section--a mode of regeneration more typical of mammalian scarring than other zebrafish appendages. Finally, we show that the maxillary barbel can regenerate after repeated injury and also in senescent fish (>2 years old).Although the teleost barbel has no human analog, the cell types it contains are highly conserved. Thus "barbology" may be a useful system for studying epithelial-mesenchymal interactions, angiogenesis and lymphangiogenesis, neural pathfinding, wound healing, scar formation and other key processes in vertebrate physiology.
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spelling doaj.art-a27286ba31664fe4a852c5b74ba49e932022-12-21T22:59:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0151e873710.1371/journal.pone.0008737Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.Elizabeth E LeClairJacek TopczewskiBarbels are integumentary sense organs found in fishes, reptiles and amphibians. The zebrafish, Danio rerio, develops paired nasal and maxillary barbels approximately one month post fertilization. Small in diameter and optically clear, these adult appendages offer a window on the development, maintenance and function of multiple cell types including skin cells, neural-crest derived pigment cells, circulatory vessels, taste buds and sensory nerves. Importantly, barbels in other otophysan fishes (e.g., catfish) are known to regenerate; however, this capacity has not been tested in zebrafish.We describe the development of the maxillary barbel in a staged series of wild type and transgenic zebrafish using light microscopy, histology and immunohistochemistry. By imaging transgenic zebrafish containing fluorescently labeled endothelial cells (Tg(fli1a:EGFP)), we demonstrate that the barbel contains a long ( approximately 2-3 mm) closed-end vessel that we interpret as a large lymphatic. The identity of this vessel was further supported by live imaging of the barbel circulation, extending recent descriptions of the lymphatic system in zebrafish. The maxillary barbel can be induced to regenerate by proximal amputation. After more than 750 experimental surgeries in which approximately 85% of the barbel's length was removed, we find that wound healing is complete within hours, followed by blastema formation ( approximately 3 days), epithelial redifferentiation (3-5 days) and appendage elongation. Maximum regrowth occurs within 2 weeks of injury. Although superficially normal, the regenerates are shorter and thicker than the contralateral controls, have abnormally organized mesenchymal cells and extracellular matrix, and contain prominent connective tissue "stumps" at the plane of section--a mode of regeneration more typical of mammalian scarring than other zebrafish appendages. Finally, we show that the maxillary barbel can regenerate after repeated injury and also in senescent fish (>2 years old).Although the teleost barbel has no human analog, the cell types it contains are highly conserved. Thus "barbology" may be a useful system for studying epithelial-mesenchymal interactions, angiogenesis and lymphangiogenesis, neural pathfinding, wound healing, scar formation and other key processes in vertebrate physiology.http://europepmc.org/articles/PMC2806924?pdf=render
spellingShingle Elizabeth E LeClair
Jacek Topczewski
Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
PLoS ONE
title Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
title_full Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
title_fullStr Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
title_full_unstemmed Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
title_short Development and regeneration of the zebrafish maxillary barbel: a novel study system for vertebrate tissue growth and repair.
title_sort development and regeneration of the zebrafish maxillary barbel a novel study system for vertebrate tissue growth and repair
url http://europepmc.org/articles/PMC2806924?pdf=render
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AT jacektopczewski developmentandregenerationofthezebrafishmaxillarybarbelanovelstudysystemforvertebratetissuegrowthandrepair