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The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis

Cancer cachexia is a multifactorial syndrome that leads to significant weight loss. Cachexia affects 50%–80% of cancer patients, depending on the tumor type, and is associated with 20%–40% of cancer patient deaths. Besides the efforts to identify molecular mechanisms of skeletal muscle atrophy—a key...

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Autores principales: Freire, Paula Paccielli, Fernandez, Geysson Javier, Cury, Sarah Santiloni, de Moraes, Diogo, Oliveira, Jakeline Santos, de Oliveira, Grasieli, Dal-Pai-Silva, Maeli, dos Reis, Patrícia Pintor, Carvalho, Robson Francisco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6515458/
https://www.ncbi.nlm.nih.gov/pubmed/31013615
http://dx.doi.org/10.3390/ijms20081962
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author Freire, Paula Paccielli
Fernandez, Geysson Javier
Cury, Sarah Santiloni
de Moraes, Diogo
Oliveira, Jakeline Santos
de Oliveira, Grasieli
Dal-Pai-Silva, Maeli
dos Reis, Patrícia Pintor
Carvalho, Robson Francisco
author_facet Freire, Paula Paccielli
Fernandez, Geysson Javier
Cury, Sarah Santiloni
de Moraes, Diogo
Oliveira, Jakeline Santos
de Oliveira, Grasieli
Dal-Pai-Silva, Maeli
dos Reis, Patrícia Pintor
Carvalho, Robson Francisco
author_sort Freire, Paula Paccielli
collection PubMed
description Cancer cachexia is a multifactorial syndrome that leads to significant weight loss. Cachexia affects 50%–80% of cancer patients, depending on the tumor type, and is associated with 20%–40% of cancer patient deaths. Besides the efforts to identify molecular mechanisms of skeletal muscle atrophy—a key feature in cancer cachexia—no effective therapy for the syndrome is currently available. MicroRNAs are regulators of gene expression, with therapeutic potential in several muscle wasting disorders. We performed a meta-analysis of previously published gene expression data to reveal new potential microRNA–mRNA networks associated with muscle atrophy in cancer cachexia. We retrieved 52 differentially expressed genes in nine studies of muscle tissue from patients and rodent models of cancer cachexia. Next, we predicted microRNAs targeting these differentially expressed genes. We also include global microRNA expression data surveyed in atrophying skeletal muscles from previous studies as background information. We identified deregulated genes involved in the regulation of apoptosis, muscle hypertrophy, catabolism, and acute phase response. We further predicted new microRNA–mRNA interactions, such as miR-27a/Foxo1, miR-27a/Mef2c, miR-27b/Cxcl12, miR-27b/Mef2c, miR-140/Cxcl12, miR-199a/Cav1, and miR-199a/Junb, which may contribute to muscle wasting in cancer cachexia. Finally, we found drugs targeting MSTN, CXCL12, and CAMK2B, which may be considered for the development of novel therapeutic strategies for cancer cachexia. Our study has broadened the knowledge of microRNA-regulated networks that are likely associated with muscle atrophy in cancer cachexia, pointing to their involvement as potential targets for novel therapeutic strategies.
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spelling pubmed-65154582019-05-30 The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis Freire, Paula Paccielli Fernandez, Geysson Javier Cury, Sarah Santiloni de Moraes, Diogo Oliveira, Jakeline Santos de Oliveira, Grasieli Dal-Pai-Silva, Maeli dos Reis, Patrícia Pintor Carvalho, Robson Francisco Int J Mol Sci Review Cancer cachexia is a multifactorial syndrome that leads to significant weight loss. Cachexia affects 50%–80% of cancer patients, depending on the tumor type, and is associated with 20%–40% of cancer patient deaths. Besides the efforts to identify molecular mechanisms of skeletal muscle atrophy—a key feature in cancer cachexia—no effective therapy for the syndrome is currently available. MicroRNAs are regulators of gene expression, with therapeutic potential in several muscle wasting disorders. We performed a meta-analysis of previously published gene expression data to reveal new potential microRNA–mRNA networks associated with muscle atrophy in cancer cachexia. We retrieved 52 differentially expressed genes in nine studies of muscle tissue from patients and rodent models of cancer cachexia. Next, we predicted microRNAs targeting these differentially expressed genes. We also include global microRNA expression data surveyed in atrophying skeletal muscles from previous studies as background information. We identified deregulated genes involved in the regulation of apoptosis, muscle hypertrophy, catabolism, and acute phase response. We further predicted new microRNA–mRNA interactions, such as miR-27a/Foxo1, miR-27a/Mef2c, miR-27b/Cxcl12, miR-27b/Mef2c, miR-140/Cxcl12, miR-199a/Cav1, and miR-199a/Junb, which may contribute to muscle wasting in cancer cachexia. Finally, we found drugs targeting MSTN, CXCL12, and CAMK2B, which may be considered for the development of novel therapeutic strategies for cancer cachexia. Our study has broadened the knowledge of microRNA-regulated networks that are likely associated with muscle atrophy in cancer cachexia, pointing to their involvement as potential targets for novel therapeutic strategies. MDPI 2019-04-22 /pmc/articles/PMC6515458/ /pubmed/31013615 http://dx.doi.org/10.3390/ijms20081962 Text en © 2019 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 Review
Freire, Paula Paccielli
Fernandez, Geysson Javier
Cury, Sarah Santiloni
de Moraes, Diogo
Oliveira, Jakeline Santos
de Oliveira, Grasieli
Dal-Pai-Silva, Maeli
dos Reis, Patrícia Pintor
Carvalho, Robson Francisco
The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title_full The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title_fullStr The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title_full_unstemmed The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title_short The Pathway to Cancer Cachexia: MicroRNA-Regulated Networks in Muscle Wasting Based on Integrative Meta-Analysis
title_sort pathway to cancer cachexia: microrna-regulated networks in muscle wasting based on integrative meta-analysis
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6515458/
https://www.ncbi.nlm.nih.gov/pubmed/31013615
http://dx.doi.org/10.3390/ijms20081962
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