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A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice

OBJECTIVES: Peripheral neuropathy is a relevant dose‐limiting adverse event that can affect up to 90% of oncologic patients with colorectal cancer receiving oxaliplatin treatment. The severity of neurotoxicity often leads to dose reduction or even premature cessation of chemotherapy. Unfortunately,...

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Autores principales: Calls, Aina, Torres‐Espin, Abel, Tormo, Marc, Martínez‐Escardó, Laura, Bonet, Núria, Casals, Ferran, Navarro, Xavier, Yuste, Víctor J., Udina, Esther, Bruna, Jordi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735376/
https://www.ncbi.nlm.nih.gov/pubmed/36369764
http://dx.doi.org/10.1002/acn3.51691
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author Calls, Aina
Torres‐Espin, Abel
Tormo, Marc
Martínez‐Escardó, Laura
Bonet, Núria
Casals, Ferran
Navarro, Xavier
Yuste, Víctor J.
Udina, Esther
Bruna, Jordi
author_facet Calls, Aina
Torres‐Espin, Abel
Tormo, Marc
Martínez‐Escardó, Laura
Bonet, Núria
Casals, Ferran
Navarro, Xavier
Yuste, Víctor J.
Udina, Esther
Bruna, Jordi
author_sort Calls, Aina
collection PubMed
description OBJECTIVES: Peripheral neuropathy is a relevant dose‐limiting adverse event that can affect up to 90% of oncologic patients with colorectal cancer receiving oxaliplatin treatment. The severity of neurotoxicity often leads to dose reduction or even premature cessation of chemotherapy. Unfortunately, the limited knowledge about the molecular mechanisms related to oxaliplatin neurotoxicity leads to a lack of effective treatments to prevent the development of this clinical condition. In this context, the present work aimed to determine the exact molecular mechanisms involved in the development of oxaliplatin neurotoxicity in a murine model to try to find new therapeutical targets. METHODS: By single‐cell RNA sequencing (scRNA‐seq), we studied the transcriptomic profile of sensory neurons and satellite glial cells (SGC) of the Dorsal Root Ganglia (DRG) from a well‐characterized mouse model of oxaliplatin neurotoxicity. RESULTS: Analysis of scRNA‐seq data pointed to modulation of inflammatory processes in response to oxaliplatin treatment. In this line, we observed increased levels of NF‐kB p65 protein, pro‐inflammatory cytokines, and immune cell infiltration in DRGs and peripheral nerves of oxaliplatin‐treated mice, which was accompanied by mechanical allodynia and decrease in sensory nerve amplitudes. INTERPRETATION: Our data show that, in addition to the well‐described DNA damage, oxaliplatin neurotoxicity is related to an exacerbated pro‐inflammatory response in DRG and peripheral nerves, and open new insights in the development of anti‐inflammatory strategies as a treatment for preventing peripheral neuropathy induced by oxaliplatin.
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spelling pubmed-97353762022-12-12 A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice Calls, Aina Torres‐Espin, Abel Tormo, Marc Martínez‐Escardó, Laura Bonet, Núria Casals, Ferran Navarro, Xavier Yuste, Víctor J. Udina, Esther Bruna, Jordi Ann Clin Transl Neurol Research Articles OBJECTIVES: Peripheral neuropathy is a relevant dose‐limiting adverse event that can affect up to 90% of oncologic patients with colorectal cancer receiving oxaliplatin treatment. The severity of neurotoxicity often leads to dose reduction or even premature cessation of chemotherapy. Unfortunately, the limited knowledge about the molecular mechanisms related to oxaliplatin neurotoxicity leads to a lack of effective treatments to prevent the development of this clinical condition. In this context, the present work aimed to determine the exact molecular mechanisms involved in the development of oxaliplatin neurotoxicity in a murine model to try to find new therapeutical targets. METHODS: By single‐cell RNA sequencing (scRNA‐seq), we studied the transcriptomic profile of sensory neurons and satellite glial cells (SGC) of the Dorsal Root Ganglia (DRG) from a well‐characterized mouse model of oxaliplatin neurotoxicity. RESULTS: Analysis of scRNA‐seq data pointed to modulation of inflammatory processes in response to oxaliplatin treatment. In this line, we observed increased levels of NF‐kB p65 protein, pro‐inflammatory cytokines, and immune cell infiltration in DRGs and peripheral nerves of oxaliplatin‐treated mice, which was accompanied by mechanical allodynia and decrease in sensory nerve amplitudes. INTERPRETATION: Our data show that, in addition to the well‐described DNA damage, oxaliplatin neurotoxicity is related to an exacerbated pro‐inflammatory response in DRG and peripheral nerves, and open new insights in the development of anti‐inflammatory strategies as a treatment for preventing peripheral neuropathy induced by oxaliplatin. John Wiley and Sons Inc. 2022-11-11 /pmc/articles/PMC9735376/ /pubmed/36369764 http://dx.doi.org/10.1002/acn3.51691 Text en © 2022 The Authors. Annals of Clinical and Translational Neurology published by Wiley Periodicals LLC on behalf of American Neurological Association. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Calls, Aina
Torres‐Espin, Abel
Tormo, Marc
Martínez‐Escardó, Laura
Bonet, Núria
Casals, Ferran
Navarro, Xavier
Yuste, Víctor J.
Udina, Esther
Bruna, Jordi
A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title_full A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title_fullStr A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title_full_unstemmed A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title_short A transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
title_sort transient inflammatory response contributes to oxaliplatin neurotoxicity in mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735376/
https://www.ncbi.nlm.nih.gov/pubmed/36369764
http://dx.doi.org/10.1002/acn3.51691
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