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MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis

BACKGROUND: Rheumatoid arthritis (RA) is a progressive degenerative disorder that leads to joint destruction. Available treatments only target the inflammatory component with minimal impact on joint repair. We recently uncovered a previously unappreciated family of pro-resolving mediators, the mares...

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Autores principales: Pistorius, Kimberly, Ly, Lucy, Souza, Patricia R., Gomez, Esteban A., Koenis, Duco S., Rodriguez, Ana R., Foster, Julie, Sosabowski, Jane, Hopkinson, Mark, Rajeeve, Vinothini, Spur, Bernd W., Pitsillides, Andrew, Pitzalis, Costantino, Dalli, Jesmond
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9038546/
https://www.ncbi.nlm.nih.gov/pubmed/35430453
http://dx.doi.org/10.1016/j.ebiom.2022.103974
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author Pistorius, Kimberly
Ly, Lucy
Souza, Patricia R.
Gomez, Esteban A.
Koenis, Duco S.
Rodriguez, Ana R.
Foster, Julie
Sosabowski, Jane
Hopkinson, Mark
Rajeeve, Vinothini
Spur, Bernd W.
Pitsillides, Andrew
Pitzalis, Costantino
Dalli, Jesmond
author_facet Pistorius, Kimberly
Ly, Lucy
Souza, Patricia R.
Gomez, Esteban A.
Koenis, Duco S.
Rodriguez, Ana R.
Foster, Julie
Sosabowski, Jane
Hopkinson, Mark
Rajeeve, Vinothini
Spur, Bernd W.
Pitsillides, Andrew
Pitzalis, Costantino
Dalli, Jesmond
author_sort Pistorius, Kimberly
collection PubMed
description BACKGROUND: Rheumatoid arthritis (RA) is a progressive degenerative disorder that leads to joint destruction. Available treatments only target the inflammatory component with minimal impact on joint repair. We recently uncovered a previously unappreciated family of pro-resolving mediators, the maresin conjugate in tissue regeneration (MCTR), that display both immunoregulatory and tissue-protective activities. Thus, we queried whether the production of these autacoids is disrupted in RA patients and whether they can be useful in treating joint inflammation and promoting joint repair. METHODS: Using a highly phenotyped RA cohort we evaluated plasma MCTR concentrations and correlated these to clinical markers of disease activity. To evaluate the immunoregulatory and tissue reparative activities we employed both in vivo models of arthritis and organ culture models. FINDINGS: Herein, we observed that plasma MCTR3 concentrations were negatively correlated with joint disease activity and severity in RA patients. Evaluation of the mechanisms engaged by this mediator in arthritic mice demonstrated that MCTR3 reprograms monocytes to confer enduring joint protective properties. Single cell transcriptomic profiling and flow cytometric evaluation of macrophages from mice treated with MCTR3-reprogrammed monocytes revealed a role for Arginase-1 (Arg-1) in mediating their joint reparative and pro-resolving activities. Arg-1 inhibition reversed both the anti-arthritic and tissue reparative actions of MCTR3-reprogrammed monocytes. INTERPRETATION: Our findings demonstrate that circulating MCTR3 levels are negatively correlated with disease in RA. When administered to mice in vivo, MCTR3 displayed both anti-inflammatory and joint reparative activities, protecting both cartilage and bone in murine arthritis. These activities were, at least in part, mediated via the reprogramming of mononuclear phagocyte responses. FUNDING: This work was supported by funding from the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme (grant no: 677542) and the Barts Charity (grant no: MGU0343) to J.D. J.D. is also supported by a Sir Henry Dale Fellowship jointly funded by the Wellcome Trust and the Royal Society (grant 107613/Z/15/Z).
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spelling pubmed-90385462022-04-27 MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis Pistorius, Kimberly Ly, Lucy Souza, Patricia R. Gomez, Esteban A. Koenis, Duco S. Rodriguez, Ana R. Foster, Julie Sosabowski, Jane Hopkinson, Mark Rajeeve, Vinothini Spur, Bernd W. Pitsillides, Andrew Pitzalis, Costantino Dalli, Jesmond EBioMedicine Articles BACKGROUND: Rheumatoid arthritis (RA) is a progressive degenerative disorder that leads to joint destruction. Available treatments only target the inflammatory component with minimal impact on joint repair. We recently uncovered a previously unappreciated family of pro-resolving mediators, the maresin conjugate in tissue regeneration (MCTR), that display both immunoregulatory and tissue-protective activities. Thus, we queried whether the production of these autacoids is disrupted in RA patients and whether they can be useful in treating joint inflammation and promoting joint repair. METHODS: Using a highly phenotyped RA cohort we evaluated plasma MCTR concentrations and correlated these to clinical markers of disease activity. To evaluate the immunoregulatory and tissue reparative activities we employed both in vivo models of arthritis and organ culture models. FINDINGS: Herein, we observed that plasma MCTR3 concentrations were negatively correlated with joint disease activity and severity in RA patients. Evaluation of the mechanisms engaged by this mediator in arthritic mice demonstrated that MCTR3 reprograms monocytes to confer enduring joint protective properties. Single cell transcriptomic profiling and flow cytometric evaluation of macrophages from mice treated with MCTR3-reprogrammed monocytes revealed a role for Arginase-1 (Arg-1) in mediating their joint reparative and pro-resolving activities. Arg-1 inhibition reversed both the anti-arthritic and tissue reparative actions of MCTR3-reprogrammed monocytes. INTERPRETATION: Our findings demonstrate that circulating MCTR3 levels are negatively correlated with disease in RA. When administered to mice in vivo, MCTR3 displayed both anti-inflammatory and joint reparative activities, protecting both cartilage and bone in murine arthritis. These activities were, at least in part, mediated via the reprogramming of mononuclear phagocyte responses. FUNDING: This work was supported by funding from the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme (grant no: 677542) and the Barts Charity (grant no: MGU0343) to J.D. J.D. is also supported by a Sir Henry Dale Fellowship jointly funded by the Wellcome Trust and the Royal Society (grant 107613/Z/15/Z). Elsevier 2022-04-14 /pmc/articles/PMC9038546/ /pubmed/35430453 http://dx.doi.org/10.1016/j.ebiom.2022.103974 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Articles
Pistorius, Kimberly
Ly, Lucy
Souza, Patricia R.
Gomez, Esteban A.
Koenis, Duco S.
Rodriguez, Ana R.
Foster, Julie
Sosabowski, Jane
Hopkinson, Mark
Rajeeve, Vinothini
Spur, Bernd W.
Pitsillides, Andrew
Pitzalis, Costantino
Dalli, Jesmond
MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title_full MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title_fullStr MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title_full_unstemmed MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title_short MCTR3 reprograms arthritic monocytes to upregulate Arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
title_sort mctr3 reprograms arthritic monocytes to upregulate arginase-1 and exert pro-resolving and tissue-protective functions in experimental arthritis
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9038546/
https://www.ncbi.nlm.nih.gov/pubmed/35430453
http://dx.doi.org/10.1016/j.ebiom.2022.103974
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