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Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis

Progressive loss of tissue homeostasis is a hallmark of numerous age-related pathologies, including osteoarthritis (OA). Accumulation of senescent chondrocytes in joints contributes to the age-dependent cartilage loss of functions through the production of hypertrophy-associated catabolic matrix-rem...

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Autores principales: Chuchana, Paul, Mausset-Bonnefont, Anne-Laure, Mathieu, Marc, Espinoza, Francisco, Teigell, Marisa, Toupet, Karine, Ripoll, Chantal, Djouad, Farida, Noel, Danièle, Jorgensen, Christian, Brondello, Jean-Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046234/
https://www.ncbi.nlm.nih.gov/pubmed/29920476
http://dx.doi.org/10.18632/aging.101481
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author Chuchana, Paul
Mausset-Bonnefont, Anne-Laure
Mathieu, Marc
Espinoza, Francisco
Teigell, Marisa
Toupet, Karine
Ripoll, Chantal
Djouad, Farida
Noel, Danièle
Jorgensen, Christian
Brondello, Jean-Marc
author_facet Chuchana, Paul
Mausset-Bonnefont, Anne-Laure
Mathieu, Marc
Espinoza, Francisco
Teigell, Marisa
Toupet, Karine
Ripoll, Chantal
Djouad, Farida
Noel, Danièle
Jorgensen, Christian
Brondello, Jean-Marc
author_sort Chuchana, Paul
collection PubMed
description Progressive loss of tissue homeostasis is a hallmark of numerous age-related pathologies, including osteoarthritis (OA). Accumulation of senescent chondrocytes in joints contributes to the age-dependent cartilage loss of functions through the production of hypertrophy-associated catabolic matrix-remodeling enzymes and pro-inflammatory cytokines. Here, we evaluated the effects of the secreted variant of the anti-aging hormone α-Klotho on cartilage homeostasis during both cartilage formation and OA development. First, we found that α-Klotho expression was detected during mouse limb development, and transiently expressed during in vitro chondrogenic differentiation of bone marrow-derived mesenchymal stem cells. Genome-wide gene array analysis of chondrocytes from OA patients revealed that incubation with recombinant secreted α-Klotho repressed expression of the NOS2 and ZIP8/MMP13 catabolic remodeling axis. Accordingly, α-Klotho expression was reduced in chronically IL1β-treated chondrocytes and in cartilage of an OA mouse model. Finally, in vivo intra-articular secreted α-Kotho gene transfer delays cartilage degradation in the OA mouse model. Altogether, our results reveal a new tissue homeostatic function for this anti-aging hormone in protecting against OA onset and progression.
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spelling pubmed-60462342018-07-17 Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis Chuchana, Paul Mausset-Bonnefont, Anne-Laure Mathieu, Marc Espinoza, Francisco Teigell, Marisa Toupet, Karine Ripoll, Chantal Djouad, Farida Noel, Danièle Jorgensen, Christian Brondello, Jean-Marc Aging (Albany NY) Research Paper Progressive loss of tissue homeostasis is a hallmark of numerous age-related pathologies, including osteoarthritis (OA). Accumulation of senescent chondrocytes in joints contributes to the age-dependent cartilage loss of functions through the production of hypertrophy-associated catabolic matrix-remodeling enzymes and pro-inflammatory cytokines. Here, we evaluated the effects of the secreted variant of the anti-aging hormone α-Klotho on cartilage homeostasis during both cartilage formation and OA development. First, we found that α-Klotho expression was detected during mouse limb development, and transiently expressed during in vitro chondrogenic differentiation of bone marrow-derived mesenchymal stem cells. Genome-wide gene array analysis of chondrocytes from OA patients revealed that incubation with recombinant secreted α-Klotho repressed expression of the NOS2 and ZIP8/MMP13 catabolic remodeling axis. Accordingly, α-Klotho expression was reduced in chronically IL1β-treated chondrocytes and in cartilage of an OA mouse model. Finally, in vivo intra-articular secreted α-Kotho gene transfer delays cartilage degradation in the OA mouse model. Altogether, our results reveal a new tissue homeostatic function for this anti-aging hormone in protecting against OA onset and progression. Impact Journals 2018-06-19 /pmc/articles/PMC6046234/ /pubmed/29920476 http://dx.doi.org/10.18632/aging.101481 Text en Copyright © 2018 Chuchana et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY) 3.0 License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Chuchana, Paul
Mausset-Bonnefont, Anne-Laure
Mathieu, Marc
Espinoza, Francisco
Teigell, Marisa
Toupet, Karine
Ripoll, Chantal
Djouad, Farida
Noel, Danièle
Jorgensen, Christian
Brondello, Jean-Marc
Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title_full Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title_fullStr Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title_full_unstemmed Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title_short Secreted α-Klotho maintains cartilage tissue homeostasis by repressing NOS2 and ZIP8-MMP13 catabolic axis
title_sort secreted α-klotho maintains cartilage tissue homeostasis by repressing nos2 and zip8-mmp13 catabolic axis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046234/
https://www.ncbi.nlm.nih.gov/pubmed/29920476
http://dx.doi.org/10.18632/aging.101481
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