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Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity

Oxaliplatin (OHP) is an antineoplastic compound able to induce peripheral neurotoxicity. Oxidative stress has been suggested to be a key factor in the development of OHP-related peripheral neurotoxicity. Mangafodipir, a contrast agent possessing mitochondrial superoxide dismutase (MnSOD)-mimetic act...

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Autores principales: Canta, Annalisa, Chiorazzi, Alessia, Pozzi, Eleonora, Fumagalli, Giulia, Monza, Laura, Meregalli, Cristina, Carozzi, Valentina A., Rodriguez-Menendez, Virginia, Oggioni, Norberto, Näsström, Jacques, Marmiroli, Paola, Cavaletti, Guido
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7402145/
https://www.ncbi.nlm.nih.gov/pubmed/32645985
http://dx.doi.org/10.3390/antiox9070594
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author Canta, Annalisa
Chiorazzi, Alessia
Pozzi, Eleonora
Fumagalli, Giulia
Monza, Laura
Meregalli, Cristina
Carozzi, Valentina A.
Rodriguez-Menendez, Virginia
Oggioni, Norberto
Näsström, Jacques
Marmiroli, Paola
Cavaletti, Guido
author_facet Canta, Annalisa
Chiorazzi, Alessia
Pozzi, Eleonora
Fumagalli, Giulia
Monza, Laura
Meregalli, Cristina
Carozzi, Valentina A.
Rodriguez-Menendez, Virginia
Oggioni, Norberto
Näsström, Jacques
Marmiroli, Paola
Cavaletti, Guido
author_sort Canta, Annalisa
collection PubMed
description Oxaliplatin (OHP) is an antineoplastic compound able to induce peripheral neurotoxicity. Oxidative stress has been suggested to be a key factor in the development of OHP-related peripheral neurotoxicity. Mangafodipir, a contrast agent possessing mitochondrial superoxide dismutase (MnSOD)-mimetic activity, has been tested as a cytoprotector in chemotherapy-induced peripheral neurotoxicity (CIPN). Calmangafodipir (PledOx(®)) has even better therapeutic activity. We investigated a BALB/c mouse model of OHP-related CIPN and the effects of the pre-treatment of calmangafodipir (2.5, 5, or 10 mg/kg intravenously) on sensory perception, and we performed a pathological study on skin biopsies to assess intraepidermal nerve fiber (IENF) density. At the end of the treatments, OHP alone or in pre-treatment with calmangafodipir 2.5 and 10 mg/kg, induced mechanical allodynia and cold thermal hyperalgesia, but calmangafodipir 5 mg/kg prevented these effects. Accordingly, OHP alone or in pre-treatment with calmangafodipir 2.5 and 10 mg/kg, induced a significant reduction in IENF density, but calmangafodipir 5 mg/kg prevented this reduction. These results confirm a protective effect of calmangafodipir against OHP-induced small fiber neuropathy. Interestingly, these results are in agreement with previous observations suggesting a U-shaped effect of calmangafodipir, with the 10 mg/kg dose less effective than the lower doses.
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spelling pubmed-74021452020-08-07 Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity Canta, Annalisa Chiorazzi, Alessia Pozzi, Eleonora Fumagalli, Giulia Monza, Laura Meregalli, Cristina Carozzi, Valentina A. Rodriguez-Menendez, Virginia Oggioni, Norberto Näsström, Jacques Marmiroli, Paola Cavaletti, Guido Antioxidants (Basel) Article Oxaliplatin (OHP) is an antineoplastic compound able to induce peripheral neurotoxicity. Oxidative stress has been suggested to be a key factor in the development of OHP-related peripheral neurotoxicity. Mangafodipir, a contrast agent possessing mitochondrial superoxide dismutase (MnSOD)-mimetic activity, has been tested as a cytoprotector in chemotherapy-induced peripheral neurotoxicity (CIPN). Calmangafodipir (PledOx(®)) has even better therapeutic activity. We investigated a BALB/c mouse model of OHP-related CIPN and the effects of the pre-treatment of calmangafodipir (2.5, 5, or 10 mg/kg intravenously) on sensory perception, and we performed a pathological study on skin biopsies to assess intraepidermal nerve fiber (IENF) density. At the end of the treatments, OHP alone or in pre-treatment with calmangafodipir 2.5 and 10 mg/kg, induced mechanical allodynia and cold thermal hyperalgesia, but calmangafodipir 5 mg/kg prevented these effects. Accordingly, OHP alone or in pre-treatment with calmangafodipir 2.5 and 10 mg/kg, induced a significant reduction in IENF density, but calmangafodipir 5 mg/kg prevented this reduction. These results confirm a protective effect of calmangafodipir against OHP-induced small fiber neuropathy. Interestingly, these results are in agreement with previous observations suggesting a U-shaped effect of calmangafodipir, with the 10 mg/kg dose less effective than the lower doses. MDPI 2020-07-07 /pmc/articles/PMC7402145/ /pubmed/32645985 http://dx.doi.org/10.3390/antiox9070594 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Canta, Annalisa
Chiorazzi, Alessia
Pozzi, Eleonora
Fumagalli, Giulia
Monza, Laura
Meregalli, Cristina
Carozzi, Valentina A.
Rodriguez-Menendez, Virginia
Oggioni, Norberto
Näsström, Jacques
Marmiroli, Paola
Cavaletti, Guido
Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title_full Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title_fullStr Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title_full_unstemmed Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title_short Calmangafodipir Reduces Sensory Alterations and Prevents Intraepidermal Nerve Fibers Loss in a Mouse Model of Oxaliplatin Induced Peripheral Neurotoxicity
title_sort calmangafodipir reduces sensory alterations and prevents intraepidermal nerve fibers loss in a mouse model of oxaliplatin induced peripheral neurotoxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7402145/
https://www.ncbi.nlm.nih.gov/pubmed/32645985
http://dx.doi.org/10.3390/antiox9070594
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