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Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization

Several bone conditions, eg, bone cancer, osteoporosis, and rheumatoid arthritis (RA), are associated with a risk of developing persistent pain. Increased osteoclast activity is often the hallmark of these bony pathologies and not only leads to bone remodeling but is also a source of pronociceptive...

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Autores principales: Jurczak, Alexandra, Delay, Lauriane, Barbier, Julie, Simon, Nils, Krock, Emerson, Sandor, Katalin, Agalave, Nilesh M., Rudjito, Resti, Wigerblad, Gustaf, Rogóż, Katarzyna, Briat, Arnaud, Miot-Noirault, Elisabeth, Martinez-Martinez, Arisai, Brömme, Dieter, Grönwall, Caroline, Malmström, Vivianne, Klareskog, Lars, Khoury, Spiro, Ferreira, Thierry, Labrum, Bonnie, Deval, Emmanuel, Jiménez-Andrade, Juan Miguel, Marchand, Fabien, Svensson, Camilla I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341234/
https://www.ncbi.nlm.nih.gov/pubmed/34924556
http://dx.doi.org/10.1097/j.pain.0000000000002543
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author Jurczak, Alexandra
Delay, Lauriane
Barbier, Julie
Simon, Nils
Krock, Emerson
Sandor, Katalin
Agalave, Nilesh M.
Rudjito, Resti
Wigerblad, Gustaf
Rogóż, Katarzyna
Briat, Arnaud
Miot-Noirault, Elisabeth
Martinez-Martinez, Arisai
Brömme, Dieter
Grönwall, Caroline
Malmström, Vivianne
Klareskog, Lars
Khoury, Spiro
Ferreira, Thierry
Labrum, Bonnie
Deval, Emmanuel
Jiménez-Andrade, Juan Miguel
Marchand, Fabien
Svensson, Camilla I.
author_facet Jurczak, Alexandra
Delay, Lauriane
Barbier, Julie
Simon, Nils
Krock, Emerson
Sandor, Katalin
Agalave, Nilesh M.
Rudjito, Resti
Wigerblad, Gustaf
Rogóż, Katarzyna
Briat, Arnaud
Miot-Noirault, Elisabeth
Martinez-Martinez, Arisai
Brömme, Dieter
Grönwall, Caroline
Malmström, Vivianne
Klareskog, Lars
Khoury, Spiro
Ferreira, Thierry
Labrum, Bonnie
Deval, Emmanuel
Jiménez-Andrade, Juan Miguel
Marchand, Fabien
Svensson, Camilla I.
author_sort Jurczak, Alexandra
collection PubMed
description Several bone conditions, eg, bone cancer, osteoporosis, and rheumatoid arthritis (RA), are associated with a risk of developing persistent pain. Increased osteoclast activity is often the hallmark of these bony pathologies and not only leads to bone remodeling but is also a source of pronociceptive factors that sensitize the bone-innervating nociceptors. Although historically bone loss in RA has been believed to be a consequence of inflammation, both bone erosion and pain can occur years before the symptom onset. Here, we have addressed the disconnection between inflammation, pain, and bone erosion by using a combination of 2 monoclonal antibodies isolated from B cells of patients with RA. We have found that mice injected with B02/B09 monoclonal antibodies (mAbs) developed a long-lasting mechanical hypersensitivity that was accompanied by bone erosion in the absence of joint edema or synovitis. Intriguingly, we have noted a lack of analgesic effect of naproxen and a moderate elevation of few inflammatory factors in the ankle joints suggesting that B02/B09-induced pain-like behavior does not depend on inflammatory processes. By contrast, we found that inhibiting osteoclast activity and acid-sensing ion channel 3 signaling prevented the development of B02/B09-mediated mechanical hypersensitivity. Moreover, we have identified secretory phospholipase A2 and lysophosphatidylcholine 16:0 as critical components of B02/B09-induced pain-like behavior and shown that treatment with a secretory phospholipase A2 inhibitor reversed B02/B09-induced mechanical hypersensitivity and bone erosion. Taken together, our study suggests a potential link between bone erosion and pain in a state of subclinical inflammation and offers a step forward in understanding the mechanisms of bone pain in diseases such as RA.
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spelling pubmed-93412342022-08-03 Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization Jurczak, Alexandra Delay, Lauriane Barbier, Julie Simon, Nils Krock, Emerson Sandor, Katalin Agalave, Nilesh M. Rudjito, Resti Wigerblad, Gustaf Rogóż, Katarzyna Briat, Arnaud Miot-Noirault, Elisabeth Martinez-Martinez, Arisai Brömme, Dieter Grönwall, Caroline Malmström, Vivianne Klareskog, Lars Khoury, Spiro Ferreira, Thierry Labrum, Bonnie Deval, Emmanuel Jiménez-Andrade, Juan Miguel Marchand, Fabien Svensson, Camilla I. Pain Research Paper Several bone conditions, eg, bone cancer, osteoporosis, and rheumatoid arthritis (RA), are associated with a risk of developing persistent pain. Increased osteoclast activity is often the hallmark of these bony pathologies and not only leads to bone remodeling but is also a source of pronociceptive factors that sensitize the bone-innervating nociceptors. Although historically bone loss in RA has been believed to be a consequence of inflammation, both bone erosion and pain can occur years before the symptom onset. Here, we have addressed the disconnection between inflammation, pain, and bone erosion by using a combination of 2 monoclonal antibodies isolated from B cells of patients with RA. We have found that mice injected with B02/B09 monoclonal antibodies (mAbs) developed a long-lasting mechanical hypersensitivity that was accompanied by bone erosion in the absence of joint edema or synovitis. Intriguingly, we have noted a lack of analgesic effect of naproxen and a moderate elevation of few inflammatory factors in the ankle joints suggesting that B02/B09-induced pain-like behavior does not depend on inflammatory processes. By contrast, we found that inhibiting osteoclast activity and acid-sensing ion channel 3 signaling prevented the development of B02/B09-mediated mechanical hypersensitivity. Moreover, we have identified secretory phospholipase A2 and lysophosphatidylcholine 16:0 as critical components of B02/B09-induced pain-like behavior and shown that treatment with a secretory phospholipase A2 inhibitor reversed B02/B09-induced mechanical hypersensitivity and bone erosion. Taken together, our study suggests a potential link between bone erosion and pain in a state of subclinical inflammation and offers a step forward in understanding the mechanisms of bone pain in diseases such as RA. Wolters Kluwer 2022-08 2021-11-19 /pmc/articles/PMC9341234/ /pubmed/34924556 http://dx.doi.org/10.1097/j.pain.0000000000002543 Text en Copyright © 2022 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the International Association for the Study of Pain. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY) (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Jurczak, Alexandra
Delay, Lauriane
Barbier, Julie
Simon, Nils
Krock, Emerson
Sandor, Katalin
Agalave, Nilesh M.
Rudjito, Resti
Wigerblad, Gustaf
Rogóż, Katarzyna
Briat, Arnaud
Miot-Noirault, Elisabeth
Martinez-Martinez, Arisai
Brömme, Dieter
Grönwall, Caroline
Malmström, Vivianne
Klareskog, Lars
Khoury, Spiro
Ferreira, Thierry
Labrum, Bonnie
Deval, Emmanuel
Jiménez-Andrade, Juan Miguel
Marchand, Fabien
Svensson, Camilla I.
Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title_full Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title_fullStr Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title_full_unstemmed Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title_short Antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
title_sort antibody-induced pain-like behavior and bone erosion: links to subclinical inflammation, osteoclast activity, and acid-sensing ion channel 3–dependent sensitization
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341234/
https://www.ncbi.nlm.nih.gov/pubmed/34924556
http://dx.doi.org/10.1097/j.pain.0000000000002543
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