Cargando…

A model of chronic enthesitis and new bone formation characterized by multimodal imaging

Enthesitis is a key feature of several different rheumatic diseases. Its pathophysiology is only partially known due to the lack of access to human tissue and the shortage of reliable animal models for enthesitis. Here, we aimed to develop a model that mimics the effector phase of enthesitis and rel...

Descripción completa

Detalles Bibliográficos
Autores principales: Czegley, Christine, Gillmann, Clarissa, Schauer, Christine, Seyler, Lisa, Reinwald, Christiane, Hahn, Madelaine, Uder, Michael, Jochmann, Katja, Naschberger, Elisabeth, Stock, Michael, Schett, Georg, Bäuerle, Tobias, Hoffmann, Markus H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6176995/
https://www.ncbi.nlm.nih.gov/pubmed/30045841
http://dx.doi.org/10.1242/dmm.034041
_version_ 1783361783649533952
author Czegley, Christine
Gillmann, Clarissa
Schauer, Christine
Seyler, Lisa
Reinwald, Christiane
Hahn, Madelaine
Uder, Michael
Jochmann, Katja
Naschberger, Elisabeth
Stock, Michael
Schett, Georg
Bäuerle, Tobias
Hoffmann, Markus H.
author_facet Czegley, Christine
Gillmann, Clarissa
Schauer, Christine
Seyler, Lisa
Reinwald, Christiane
Hahn, Madelaine
Uder, Michael
Jochmann, Katja
Naschberger, Elisabeth
Stock, Michael
Schett, Georg
Bäuerle, Tobias
Hoffmann, Markus H.
author_sort Czegley, Christine
collection PubMed
description Enthesitis is a key feature of several different rheumatic diseases. Its pathophysiology is only partially known due to the lack of access to human tissue and the shortage of reliable animal models for enthesitis. Here, we aimed to develop a model that mimics the effector phase of enthesitis and reliably leads to inflammation and new bone formation. Enthesitis was induced by local injection of monosodium urate (MSU) crystals into the metatarsal entheses of wild-type (WT) or oxidative-burst-deficient (Ncf1**) mice. Quantitative variables of inflammation (edema, swelling) and vascularization (tissue perfusion) were assessed by magnetic resonance imaging (MRI), bone-forming activity by [(18)F]-fluoride positron emission tomography (PET), and destruction of cortical bone and new bone formation by computed tomography (CT). Non-invasive imaging was validated by histochemical and histomorphometric analysis. While injection of MSU crystals into WT mice triggered transient mild enthesitis with no new bone formation, Ncf1** mice developed chronic enthesitis accompanied by massive enthesiophytes. In MRI, inflammation and blood flow in the entheses were chronically increased, while PET/CT showed osteoproliferation with enthesiophyte formation. Histochemical analyses showed chronic inflammation, increased vascularization, osteoclast differentiation and bone deposition in the affected entheseal sites. Herein we describe a fast and reliable effector model of chronic enthesitis, which is characterized by a combination of inflammation, vascularization and new bone formation. This model will help to disentangle the molecular pathways involved in the effector phase of enthesitis.
format Online
Article
Text
id pubmed-6176995
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher The Company of Biologists Ltd
record_format MEDLINE/PubMed
spelling pubmed-61769952018-10-16 A model of chronic enthesitis and new bone formation characterized by multimodal imaging Czegley, Christine Gillmann, Clarissa Schauer, Christine Seyler, Lisa Reinwald, Christiane Hahn, Madelaine Uder, Michael Jochmann, Katja Naschberger, Elisabeth Stock, Michael Schett, Georg Bäuerle, Tobias Hoffmann, Markus H. Dis Model Mech Research Article Enthesitis is a key feature of several different rheumatic diseases. Its pathophysiology is only partially known due to the lack of access to human tissue and the shortage of reliable animal models for enthesitis. Here, we aimed to develop a model that mimics the effector phase of enthesitis and reliably leads to inflammation and new bone formation. Enthesitis was induced by local injection of monosodium urate (MSU) crystals into the metatarsal entheses of wild-type (WT) or oxidative-burst-deficient (Ncf1**) mice. Quantitative variables of inflammation (edema, swelling) and vascularization (tissue perfusion) were assessed by magnetic resonance imaging (MRI), bone-forming activity by [(18)F]-fluoride positron emission tomography (PET), and destruction of cortical bone and new bone formation by computed tomography (CT). Non-invasive imaging was validated by histochemical and histomorphometric analysis. While injection of MSU crystals into WT mice triggered transient mild enthesitis with no new bone formation, Ncf1** mice developed chronic enthesitis accompanied by massive enthesiophytes. In MRI, inflammation and blood flow in the entheses were chronically increased, while PET/CT showed osteoproliferation with enthesiophyte formation. Histochemical analyses showed chronic inflammation, increased vascularization, osteoclast differentiation and bone deposition in the affected entheseal sites. Herein we describe a fast and reliable effector model of chronic enthesitis, which is characterized by a combination of inflammation, vascularization and new bone formation. This model will help to disentangle the molecular pathways involved in the effector phase of enthesitis. The Company of Biologists Ltd 2018-09-01 2018-08-30 /pmc/articles/PMC6176995/ /pubmed/30045841 http://dx.doi.org/10.1242/dmm.034041 Text en © 2018. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Czegley, Christine
Gillmann, Clarissa
Schauer, Christine
Seyler, Lisa
Reinwald, Christiane
Hahn, Madelaine
Uder, Michael
Jochmann, Katja
Naschberger, Elisabeth
Stock, Michael
Schett, Georg
Bäuerle, Tobias
Hoffmann, Markus H.
A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title_full A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title_fullStr A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title_full_unstemmed A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title_short A model of chronic enthesitis and new bone formation characterized by multimodal imaging
title_sort model of chronic enthesitis and new bone formation characterized by multimodal imaging
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6176995/
https://www.ncbi.nlm.nih.gov/pubmed/30045841
http://dx.doi.org/10.1242/dmm.034041
work_keys_str_mv AT czegleychristine amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT gillmannclarissa amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT schauerchristine amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT seylerlisa amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT reinwaldchristiane amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT hahnmadelaine amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT udermichael amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT jochmannkatja amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT naschbergerelisabeth amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT stockmichael amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT schettgeorg amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT bauerletobias amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT hoffmannmarkush amodelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT czegleychristine modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT gillmannclarissa modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT schauerchristine modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT seylerlisa modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT reinwaldchristiane modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT hahnmadelaine modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT udermichael modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT jochmannkatja modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT naschbergerelisabeth modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT stockmichael modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT schettgeorg modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT bauerletobias modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging
AT hoffmannmarkush modelofchronicenthesitisandnewboneformationcharacterizedbymultimodalimaging