Identification of TGFβ signatures in six murine models mimicking different osteoarthritis clinical phenotypes.
Animals
Arthritis, Experimental
/ genetics
CD36 Antigens
/ genetics
Collagenases
Diet, High-Fat
Disease Models, Animal
GTP-Binding Protein gamma Subunits
/ genetics
Gene Expression Profiling
Growth Differentiation Factor 5
/ genetics
Hypergravity
Latent TGF-beta Binding Proteins
/ genetics
Meniscectomy
Metabolic Syndrome
Mice
Mice, Knockout
Obesity
Osteoarthritis
/ genetics
Transcriptome
Transforming Growth Factor beta
/ genetics
Murine model
Osteoarthritis
Signature
Transcriptomic
Journal
Osteoarthritis and cartilage
ISSN: 1522-9653
Titre abrégé: Osteoarthritis Cartilage
Pays: England
ID NLM: 9305697
Informations de publication
Date de publication:
10 2020
10 2020
Historique:
received:
04
03
2020
revised:
12
06
2020
accepted:
22
06
2020
pubmed:
14
7
2020
medline:
21
9
2021
entrez:
14
7
2020
Statut:
ppublish
Résumé
TGFβ is a key player in cartilage homeostasis and OA pathology. However, few data are available on the role of TGFβ signalling in the different OA phenotypes. Here, we analysed the TGFβ pathway by transcriptomic analysis in six mouse models of OA. We have brought together seven expert laboratories in OA pathophysiology and, used inter-laboratories standard operating procedures and quality controls to increase experimental reproducibility and decrease bias. As none of the available OA models covers the complexity and heterogeneity of the human disease, we used six different murine models of knee OA: from post-traumatic/mechanical models (meniscectomy (MNX), MNX and hypergravity (HG-MNX), MNX and high fat diet (HF-MNX), MNX and seipin knock-out (SP-MNX)) to aging-related OA and inflammatory OA (collagenase-induced OA (CIOA)). Four controls (MNX-sham, young, SP-sham, CIOA-sham) were added. OsteoArthritis Research Society International (OARSI)-based scoring of femoral condyles and ribonucleic acid (RNA) extraction from tibial plateau samples were done by single operators as well as the transcriptomic analysis of the TGFβ family pathway by Custom TaqMan® Array Microfluidic Cards. The transcriptomic analysis revealed specific gene signatures in each of the six models; however, no gene was deregulated in all six OA models. Of interest, we found that the combinatorial Gdf5-Cd36-Ltbp4 signature might discriminate distinct subgroups of OA: Cd36 upregulation is a hallmark of MNX-related OA while Gdf5 and Ltbp4 upregulation is related to MNX-induced OA and CIOA. These findings stress the OA animal model heterogeneity and the need of caution when extrapolating results from one model to another.
Identifiants
pubmed: 32659345
pii: S1063-4584(20)31059-1
doi: 10.1016/j.joca.2020.06.008
pii:
doi:
Substances chimiques
Bscl2 protein, mouse
0
CD36 Antigens
0
GTP-Binding Protein gamma Subunits
0
Gdf5 protein, mouse
0
Growth Differentiation Factor 5
0
LTBP-4 protein, mouse
0
Latent TGF-beta Binding Proteins
0
Transforming Growth Factor beta
0
Collagenases
EC 3.4.24.-
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
1373-1384Informations de copyright
Copyright © 2020 Osteoarthritis Research Society International. Published by Elsevier Ltd. All rights reserved.