Cargando…
Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms
Osteogenesis imperfecta (OI) is an inherited connective tissue disorder with skeletal dysplasia of varying severity, predominantly caused by mutations in the collagen I genes (COL1A1/COL1A2). Extraskeletal findings such as cardiac and pulmonary complications are generally considered to be significan...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406754/ https://www.ncbi.nlm.nih.gov/pubmed/22589248 http://dx.doi.org/10.1093/hmg/dds183 |
_version_ | 1782239243426332672 |
---|---|
author | Thiele, Frank Cohrs, Christian M. Flor, Armando Lisse, Thomas S. Przemeck, Gerhard K. H. Horsch, Marion Schrewe, Anja Gailus-Durner, Valerie Ivandic, Boris Katus, Hugo A. Wurst, Wolfgang Reisenberg, Catherine Chaney, Hollis Fuchs, Helmut Hans, Wolfgang Beckers, Johannes Marini, Joan C. Hrabé de Angelis, Martin |
author_facet | Thiele, Frank Cohrs, Christian M. Flor, Armando Lisse, Thomas S. Przemeck, Gerhard K. H. Horsch, Marion Schrewe, Anja Gailus-Durner, Valerie Ivandic, Boris Katus, Hugo A. Wurst, Wolfgang Reisenberg, Catherine Chaney, Hollis Fuchs, Helmut Hans, Wolfgang Beckers, Johannes Marini, Joan C. Hrabé de Angelis, Martin |
author_sort | Thiele, Frank |
collection | PubMed |
description | Osteogenesis imperfecta (OI) is an inherited connective tissue disorder with skeletal dysplasia of varying severity, predominantly caused by mutations in the collagen I genes (COL1A1/COL1A2). Extraskeletal findings such as cardiac and pulmonary complications are generally considered to be significant secondary features. Aga2, a murine model for human OI, was systemically analyzed in the German Mouse Clinic by means of in vivo and in vitro examinations of the cardiopulmonary system, to identify novel mechanisms accounting for perinatal lethality. Pulmonary and, especially, cardiac fibroblast of perinatal lethal Aga2/+ animals display a strong down-regulation of Col1a1 transcripts in vivo and in vitro, resulting in a loss of extracellular matrix integrity. In addition, dysregulated gene expression of Nppa, different types of collagen and Agt in heart and lung tissue support a bone-independent vicious cycle of heart dysfunction, including hypertrophy, loss of myocardial matrix integrity, pulmonary hypertension, pneumonia and hypoxia leading to death in Aga2. These murine findings are corroborated by a pediatric OI cohort study, displaying significant progressive decline in pulmonary function and restrictive pulmonary disease independent of scoliosis. Most participants show mild cardiac valvular regurgitation, independent of pulmonary and skeletal findings. Data obtained from human OI patients and the mouse model Aga2 provide novel evidence for primary effects of type I collagen mutations on the heart and lung. The findings will have potential benefits of anticipatory clinical exams and early intervention in OI patients. |
format | Online Article Text |
id | pubmed-3406754 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-34067542012-07-27 Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms Thiele, Frank Cohrs, Christian M. Flor, Armando Lisse, Thomas S. Przemeck, Gerhard K. H. Horsch, Marion Schrewe, Anja Gailus-Durner, Valerie Ivandic, Boris Katus, Hugo A. Wurst, Wolfgang Reisenberg, Catherine Chaney, Hollis Fuchs, Helmut Hans, Wolfgang Beckers, Johannes Marini, Joan C. Hrabé de Angelis, Martin Hum Mol Genet Articles Osteogenesis imperfecta (OI) is an inherited connective tissue disorder with skeletal dysplasia of varying severity, predominantly caused by mutations in the collagen I genes (COL1A1/COL1A2). Extraskeletal findings such as cardiac and pulmonary complications are generally considered to be significant secondary features. Aga2, a murine model for human OI, was systemically analyzed in the German Mouse Clinic by means of in vivo and in vitro examinations of the cardiopulmonary system, to identify novel mechanisms accounting for perinatal lethality. Pulmonary and, especially, cardiac fibroblast of perinatal lethal Aga2/+ animals display a strong down-regulation of Col1a1 transcripts in vivo and in vitro, resulting in a loss of extracellular matrix integrity. In addition, dysregulated gene expression of Nppa, different types of collagen and Agt in heart and lung tissue support a bone-independent vicious cycle of heart dysfunction, including hypertrophy, loss of myocardial matrix integrity, pulmonary hypertension, pneumonia and hypoxia leading to death in Aga2. These murine findings are corroborated by a pediatric OI cohort study, displaying significant progressive decline in pulmonary function and restrictive pulmonary disease independent of scoliosis. Most participants show mild cardiac valvular regurgitation, independent of pulmonary and skeletal findings. Data obtained from human OI patients and the mouse model Aga2 provide novel evidence for primary effects of type I collagen mutations on the heart and lung. The findings will have potential benefits of anticipatory clinical exams and early intervention in OI patients. Oxford University Press 2012-08-15 2012-05-15 /pmc/articles/PMC3406754/ /pubmed/22589248 http://dx.doi.org/10.1093/hmg/dds183 Text en © The Author 2012. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Articles Thiele, Frank Cohrs, Christian M. Flor, Armando Lisse, Thomas S. Przemeck, Gerhard K. H. Horsch, Marion Schrewe, Anja Gailus-Durner, Valerie Ivandic, Boris Katus, Hugo A. Wurst, Wolfgang Reisenberg, Catherine Chaney, Hollis Fuchs, Helmut Hans, Wolfgang Beckers, Johannes Marini, Joan C. Hrabé de Angelis, Martin Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title | Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title_full | Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title_fullStr | Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title_full_unstemmed | Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title_short | Cardiopulmonary dysfunction in the Osteogenesis imperfecta mouse model Aga2 and human patients are caused by bone-independent mechanisms |
title_sort | cardiopulmonary dysfunction in the osteogenesis imperfecta mouse model aga2 and human patients are caused by bone-independent mechanisms |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406754/ https://www.ncbi.nlm.nih.gov/pubmed/22589248 http://dx.doi.org/10.1093/hmg/dds183 |
work_keys_str_mv | AT thielefrank cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT cohrschristianm cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT florarmando cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT lissethomass cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT przemeckgerhardkh cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT horschmarion cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT schreweanja cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT gailusdurnervalerie cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT ivandicboris cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT katushugoa cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT wurstwolfgang cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT reisenbergcatherine cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT chaneyhollis cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT fuchshelmut cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT hanswolfgang cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT beckersjohannes cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT marinijoanc cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms AT hrabedeangelismartin cardiopulmonarydysfunctionintheosteogenesisimperfectamousemodelaga2andhumanpatientsarecausedbyboneindependentmechanisms |