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Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model

Oesophageal atresia (OA) and tracheooesophageal fistula (TOF) are relatively common human congenital malformations of the foregut where the oesophagus does not connect with the stomach and there is an abnormal connection between the stomach and the respiratory tract. They require immediate correctiv...

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Autores principales: Hajduk, Piotr, Sato, Hideaki, Puri, Prem, Murphy, Paula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3221665/
https://www.ncbi.nlm.nih.gov/pubmed/22132119
http://dx.doi.org/10.1371/journal.pone.0027635
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author Hajduk, Piotr
Sato, Hideaki
Puri, Prem
Murphy, Paula
author_facet Hajduk, Piotr
Sato, Hideaki
Puri, Prem
Murphy, Paula
author_sort Hajduk, Piotr
collection PubMed
description Oesophageal atresia (OA) and tracheooesophageal fistula (TOF) are relatively common human congenital malformations of the foregut where the oesophagus does not connect with the stomach and there is an abnormal connection between the stomach and the respiratory tract. They require immediate corrective surgery and have an impact on the future health of the individual. These abnormalities are mimicked by exposure of rat and mouse embryos in utero to the drug adriamycin. The causes of OA/TOF during human development are not known, however a number of mouse mutants where different signalling pathways are directly affected, show similar abnormalities, implicating multiple and complex signalling mechanisms. The similarities in developmental outcome seen in human infants and in the adriamycin treated mouse model underline the potential of this model to unravel the early embryological events and further our understanding of the processes disturbed, leading to such abnormalities. Here we report a systematic study of the foregut and adjacent tissues in embryos treated with adriamycin at E7 and E8 and analysed between E9 and E12, comparing morphology in 3D in 149 specimens. We describe a spectrum of 8 defects, the most common of which is ventral displacement and branching of the notochord (in 94% of embryos at E10) and a close spatial correspondence between the site of notochord branching and defects of the foregut. In addition gene expression analysis shows altered dorso-ventral foregut patterning in the vicinity of notochord branches. This study shows a number of features of the adriamycin mouse model not previously reported, implicates the notochord as a primary site of disturbance in such abnormalities and underlines the importance of the model to further address the mechanistic basis of foregut congenital abnormalities.
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spelling pubmed-32216652011-11-30 Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model Hajduk, Piotr Sato, Hideaki Puri, Prem Murphy, Paula PLoS One Research Article Oesophageal atresia (OA) and tracheooesophageal fistula (TOF) are relatively common human congenital malformations of the foregut where the oesophagus does not connect with the stomach and there is an abnormal connection between the stomach and the respiratory tract. They require immediate corrective surgery and have an impact on the future health of the individual. These abnormalities are mimicked by exposure of rat and mouse embryos in utero to the drug adriamycin. The causes of OA/TOF during human development are not known, however a number of mouse mutants where different signalling pathways are directly affected, show similar abnormalities, implicating multiple and complex signalling mechanisms. The similarities in developmental outcome seen in human infants and in the adriamycin treated mouse model underline the potential of this model to unravel the early embryological events and further our understanding of the processes disturbed, leading to such abnormalities. Here we report a systematic study of the foregut and adjacent tissues in embryos treated with adriamycin at E7 and E8 and analysed between E9 and E12, comparing morphology in 3D in 149 specimens. We describe a spectrum of 8 defects, the most common of which is ventral displacement and branching of the notochord (in 94% of embryos at E10) and a close spatial correspondence between the site of notochord branching and defects of the foregut. In addition gene expression analysis shows altered dorso-ventral foregut patterning in the vicinity of notochord branches. This study shows a number of features of the adriamycin mouse model not previously reported, implicates the notochord as a primary site of disturbance in such abnormalities and underlines the importance of the model to further address the mechanistic basis of foregut congenital abnormalities. Public Library of Science 2011-11-21 /pmc/articles/PMC3221665/ /pubmed/22132119 http://dx.doi.org/10.1371/journal.pone.0027635 Text en Hajduk et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hajduk, Piotr
Sato, Hideaki
Puri, Prem
Murphy, Paula
Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title_full Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title_fullStr Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title_full_unstemmed Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title_short Abnormal Notochord Branching Is Associated with Foregut Malformations in the Adriamycin Treated Mouse Model
title_sort abnormal notochord branching is associated with foregut malformations in the adriamycin treated mouse model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3221665/
https://www.ncbi.nlm.nih.gov/pubmed/22132119
http://dx.doi.org/10.1371/journal.pone.0027635
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