Generation of an immortalized mouse embryonic palatal mesenchyme cell line.

Palatogenesis is a complex morphogenetic process, disruptions in which result in highly prevalent birth defects in humans. In recent decades, the use of model systems such as genetically-modified mice, mouse palatal organ cultures and primary mouse embryonic palatal mesenchyme (MEPM) cultures has pr...

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Main Authors: Katherine A Fantauzzo, Philippe Soriano
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5459506?pdf=render
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spelling doaj-606c670ebe364dfa860e0d3c171b68f52020-11-25T00:04:23ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01126e017907810.1371/journal.pone.0179078Generation of an immortalized mouse embryonic palatal mesenchyme cell line.Katherine A FantauzzoPhilippe SorianoPalatogenesis is a complex morphogenetic process, disruptions in which result in highly prevalent birth defects in humans. In recent decades, the use of model systems such as genetically-modified mice, mouse palatal organ cultures and primary mouse embryonic palatal mesenchyme (MEPM) cultures has provided significant insight into the molecular and cellular defects underlying cleft palate. However, drawbacks in each of these systems have prevented high-throughput, large-scale studies of palatogenesis in vitro. Here, we report the generation of an immortalized MEPM cell line that maintains the morphology, migration ability, transcript expression and responsiveness to exogenous growth factors of primary MEPM cells, with increased proliferative potential over primary cultures. The immortalization method described in this study will facilitate the generation of palatal mesenchyme cells with an unlimited capacity for expansion from a single genetically-modified mouse embryo and enable mechanistic studies of palatogenesis that have not been possible using primary culture.http://europepmc.org/articles/PMC5459506?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Katherine A Fantauzzo
Philippe Soriano
spellingShingle Katherine A Fantauzzo
Philippe Soriano
Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
PLoS ONE
author_facet Katherine A Fantauzzo
Philippe Soriano
author_sort Katherine A Fantauzzo
title Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
title_short Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
title_full Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
title_fullStr Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
title_full_unstemmed Generation of an immortalized mouse embryonic palatal mesenchyme cell line.
title_sort generation of an immortalized mouse embryonic palatal mesenchyme cell line.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Palatogenesis is a complex morphogenetic process, disruptions in which result in highly prevalent birth defects in humans. In recent decades, the use of model systems such as genetically-modified mice, mouse palatal organ cultures and primary mouse embryonic palatal mesenchyme (MEPM) cultures has provided significant insight into the molecular and cellular defects underlying cleft palate. However, drawbacks in each of these systems have prevented high-throughput, large-scale studies of palatogenesis in vitro. Here, we report the generation of an immortalized MEPM cell line that maintains the morphology, migration ability, transcript expression and responsiveness to exogenous growth factors of primary MEPM cells, with increased proliferative potential over primary cultures. The immortalization method described in this study will facilitate the generation of palatal mesenchyme cells with an unlimited capacity for expansion from a single genetically-modified mouse embryo and enable mechanistic studies of palatogenesis that have not been possible using primary culture.
url http://europepmc.org/articles/PMC5459506?pdf=render
work_keys_str_mv AT katherineafantauzzo generationofanimmortalizedmouseembryonicpalatalmesenchymecellline
AT philippesoriano generationofanimmortalizedmouseembryonicpalatalmesenchymecellline
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