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Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation

An idiopathic myopathy characterized by central nuclei in muscle fibers, a hallmark of muscle regeneration, has been observed in cancer patients. In cancer cachexia skeletal muscle is incapable of regeneration, consequently, this observation remains unaccounted for. In C26-tumor bearing, cachectic m...

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Autores principales: Daou, Nissrine, Hassani, Medhi, Matos, Emidio, De Castro, Gabriela Salim, Galvao Figueredo Costa, Raquel, Seelaender, Marilia, Moresi, Viviana, Rocchi, Marco, Adamo, Sergio, Li, Zhenlin, Agbulut, Onnik, Coletti, Dario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7038037/
https://www.ncbi.nlm.nih.gov/pubmed/32041358
http://dx.doi.org/10.3390/ijms21031092
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author Daou, Nissrine
Hassani, Medhi
Matos, Emidio
De Castro, Gabriela Salim
Galvao Figueredo Costa, Raquel
Seelaender, Marilia
Moresi, Viviana
Rocchi, Marco
Adamo, Sergio
Li, Zhenlin
Agbulut, Onnik
Coletti, Dario
author_facet Daou, Nissrine
Hassani, Medhi
Matos, Emidio
De Castro, Gabriela Salim
Galvao Figueredo Costa, Raquel
Seelaender, Marilia
Moresi, Viviana
Rocchi, Marco
Adamo, Sergio
Li, Zhenlin
Agbulut, Onnik
Coletti, Dario
author_sort Daou, Nissrine
collection PubMed
description An idiopathic myopathy characterized by central nuclei in muscle fibers, a hallmark of muscle regeneration, has been observed in cancer patients. In cancer cachexia skeletal muscle is incapable of regeneration, consequently, this observation remains unaccounted for. In C26-tumor bearing, cachectic mice, we observed muscle fibers with central nuclei in the absence of molecular markers of bona fide regeneration. These clustered, non-peripheral nuclei were present in NCAM-expressing muscle fibers. Since NCAM expression is upregulated in denervated myofibers, we searched for additional makers of denervation, including AchRs, MUSK, and HDAC. This last one being also consistently upregulated in cachectic muscles, correlated with an increase of central myonuclei. This held true in the musculature of patients suffering from gastrointestinal cancer, where a progressive increase in the number of central myonuclei was observed in weight stable and in cachectic patients, compared to healthy subjects. Based on all of the above, the presence of central myonuclei in cancer patients and animal models of cachexia is consistent with motor neuron loss or NMJ perturbation and could underlie a previously neglected phenomenon of denervation, rather than representing myofiber damage and regeneration in cachexia. Similarly to aging, denervation-dependent myofiber atrophy could contribute to muscle wasting in cancer cachexia.
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spelling pubmed-70380372020-03-10 Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation Daou, Nissrine Hassani, Medhi Matos, Emidio De Castro, Gabriela Salim Galvao Figueredo Costa, Raquel Seelaender, Marilia Moresi, Viviana Rocchi, Marco Adamo, Sergio Li, Zhenlin Agbulut, Onnik Coletti, Dario Int J Mol Sci Article An idiopathic myopathy characterized by central nuclei in muscle fibers, a hallmark of muscle regeneration, has been observed in cancer patients. In cancer cachexia skeletal muscle is incapable of regeneration, consequently, this observation remains unaccounted for. In C26-tumor bearing, cachectic mice, we observed muscle fibers with central nuclei in the absence of molecular markers of bona fide regeneration. These clustered, non-peripheral nuclei were present in NCAM-expressing muscle fibers. Since NCAM expression is upregulated in denervated myofibers, we searched for additional makers of denervation, including AchRs, MUSK, and HDAC. This last one being also consistently upregulated in cachectic muscles, correlated with an increase of central myonuclei. This held true in the musculature of patients suffering from gastrointestinal cancer, where a progressive increase in the number of central myonuclei was observed in weight stable and in cachectic patients, compared to healthy subjects. Based on all of the above, the presence of central myonuclei in cancer patients and animal models of cachexia is consistent with motor neuron loss or NMJ perturbation and could underlie a previously neglected phenomenon of denervation, rather than representing myofiber damage and regeneration in cachexia. Similarly to aging, denervation-dependent myofiber atrophy could contribute to muscle wasting in cancer cachexia. MDPI 2020-02-06 /pmc/articles/PMC7038037/ /pubmed/32041358 http://dx.doi.org/10.3390/ijms21031092 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
Daou, Nissrine
Hassani, Medhi
Matos, Emidio
De Castro, Gabriela Salim
Galvao Figueredo Costa, Raquel
Seelaender, Marilia
Moresi, Viviana
Rocchi, Marco
Adamo, Sergio
Li, Zhenlin
Agbulut, Onnik
Coletti, Dario
Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title_full Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title_fullStr Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title_full_unstemmed Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title_short Displaced Myonuclei in Cancer Cachexia Suggest Altered Innervation
title_sort displaced myonuclei in cancer cachexia suggest altered innervation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7038037/
https://www.ncbi.nlm.nih.gov/pubmed/32041358
http://dx.doi.org/10.3390/ijms21031092
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