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miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology

Leprosy remains as a public health problem and its physiopathology is still not fully understood. MicroRNAs (miRNA) are small RNA non-coding that can interfere with mRNA to regulate gene expression. A few studies using DNA chip microarrays have explored the expression of miRNA in leprosy patients us...

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Autores principales: Salgado, Claudio Guedes, Pinto, Pablo, Bouth, Raquel Carvalho, Gobbo, Angélica Rita, Messias, Ana Caroline Cunha, Sandoval, Tatiana Vinasco, dos Santos, André Mauricio Ribeiro, Moreira, Fabiano Cordeiro, Vidal, Amanda Ferreira, Goulart, Luiz Ricardo, Barreto, Josafá Gonçalves, da Silva, Moisés Batista, Frade, Marco Andrey Cipriani, Spencer, John Stewart, Santos, Sidney, Ribeiro-dos-Santos, Ândrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5854644/
https://www.ncbi.nlm.nih.gov/pubmed/29593724
http://dx.doi.org/10.3389/fimmu.2018.00463
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author Salgado, Claudio Guedes
Pinto, Pablo
Bouth, Raquel Carvalho
Gobbo, Angélica Rita
Messias, Ana Caroline Cunha
Sandoval, Tatiana Vinasco
dos Santos, André Mauricio Ribeiro
Moreira, Fabiano Cordeiro
Vidal, Amanda Ferreira
Goulart, Luiz Ricardo
Barreto, Josafá Gonçalves
da Silva, Moisés Batista
Frade, Marco Andrey Cipriani
Spencer, John Stewart
Santos, Sidney
Ribeiro-dos-Santos, Ândrea
author_facet Salgado, Claudio Guedes
Pinto, Pablo
Bouth, Raquel Carvalho
Gobbo, Angélica Rita
Messias, Ana Caroline Cunha
Sandoval, Tatiana Vinasco
dos Santos, André Mauricio Ribeiro
Moreira, Fabiano Cordeiro
Vidal, Amanda Ferreira
Goulart, Luiz Ricardo
Barreto, Josafá Gonçalves
da Silva, Moisés Batista
Frade, Marco Andrey Cipriani
Spencer, John Stewart
Santos, Sidney
Ribeiro-dos-Santos, Ândrea
author_sort Salgado, Claudio Guedes
collection PubMed
description Leprosy remains as a public health problem and its physiopathology is still not fully understood. MicroRNAs (miRNA) are small RNA non-coding that can interfere with mRNA to regulate gene expression. A few studies using DNA chip microarrays have explored the expression of miRNA in leprosy patients using a predetermined set of genes as targets, providing interesting findings regarding the regulation of immune genes. However, using a predetermined set of genes restricted the possibility of finding new miRNAs that might be involved in different mechanisms of disease. Thus, we examined the miRNome of tuberculoid (TT) and lepromatous (LL) patients using both blood and lesional biopsies from classical leprosy patients (LP) who visited the Dr. Marcello Candia Reference Unit in Sanitary Dermatology in the State of Pará and compared them with healthy subjects. Using a set of tools to correlate significantly differentially expressed miRNAs with their gene targets, we identified possible interactions and networks of miRNAs that might be involved in leprosy immunophysiopathology. Using this approach, we showed that the leprosy miRNA profile in blood is distinct from that in lesional skin as well as that four main groups of genes are the targets of leprosy miRNA: (1) recognition and phagocytosis, with activation of immune effector cells, where the immunosuppressant profile of LL and immunoresponsive profile of TT are clearly affected by miRNA expression; (2) apoptosis, with supportive data for an antiapoptotic leprosy profile based on BCL2, MCL1, and CASP8 expression; (3) Schwann cells (SCs), demyelination and epithelial–mesenchymal transition (EMT), supporting a role for different developmental or differentiation gene families, such as Sox, Zeb, and Hox; and (4) loss of sensation and neuropathic pain, revealing that RHOA, ROCK1, SIGMAR1, and aquaporin-1 (AQP1) may be involved in the loss of sensation or leprosy pain, indicating possible new therapeutic targets. Additionally, AQP1 may also be involved in skin dryness and loss of elasticity, which are well known signs of leprosy but with unrecognized physiopathology. In sum, miRNA expression reveals new aspects of leprosy immunophysiopathology, especially on the regulation of the immune system, apoptosis, SC demyelination, EMT, and neuropathic pain.
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spelling pubmed-58546442018-03-28 miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology Salgado, Claudio Guedes Pinto, Pablo Bouth, Raquel Carvalho Gobbo, Angélica Rita Messias, Ana Caroline Cunha Sandoval, Tatiana Vinasco dos Santos, André Mauricio Ribeiro Moreira, Fabiano Cordeiro Vidal, Amanda Ferreira Goulart, Luiz Ricardo Barreto, Josafá Gonçalves da Silva, Moisés Batista Frade, Marco Andrey Cipriani Spencer, John Stewart Santos, Sidney Ribeiro-dos-Santos, Ândrea Front Immunol Immunology Leprosy remains as a public health problem and its physiopathology is still not fully understood. MicroRNAs (miRNA) are small RNA non-coding that can interfere with mRNA to regulate gene expression. A few studies using DNA chip microarrays have explored the expression of miRNA in leprosy patients using a predetermined set of genes as targets, providing interesting findings regarding the regulation of immune genes. However, using a predetermined set of genes restricted the possibility of finding new miRNAs that might be involved in different mechanisms of disease. Thus, we examined the miRNome of tuberculoid (TT) and lepromatous (LL) patients using both blood and lesional biopsies from classical leprosy patients (LP) who visited the Dr. Marcello Candia Reference Unit in Sanitary Dermatology in the State of Pará and compared them with healthy subjects. Using a set of tools to correlate significantly differentially expressed miRNAs with their gene targets, we identified possible interactions and networks of miRNAs that might be involved in leprosy immunophysiopathology. Using this approach, we showed that the leprosy miRNA profile in blood is distinct from that in lesional skin as well as that four main groups of genes are the targets of leprosy miRNA: (1) recognition and phagocytosis, with activation of immune effector cells, where the immunosuppressant profile of LL and immunoresponsive profile of TT are clearly affected by miRNA expression; (2) apoptosis, with supportive data for an antiapoptotic leprosy profile based on BCL2, MCL1, and CASP8 expression; (3) Schwann cells (SCs), demyelination and epithelial–mesenchymal transition (EMT), supporting a role for different developmental or differentiation gene families, such as Sox, Zeb, and Hox; and (4) loss of sensation and neuropathic pain, revealing that RHOA, ROCK1, SIGMAR1, and aquaporin-1 (AQP1) may be involved in the loss of sensation or leprosy pain, indicating possible new therapeutic targets. Additionally, AQP1 may also be involved in skin dryness and loss of elasticity, which are well known signs of leprosy but with unrecognized physiopathology. In sum, miRNA expression reveals new aspects of leprosy immunophysiopathology, especially on the regulation of the immune system, apoptosis, SC demyelination, EMT, and neuropathic pain. Frontiers Media S.A. 2018-03-09 /pmc/articles/PMC5854644/ /pubmed/29593724 http://dx.doi.org/10.3389/fimmu.2018.00463 Text en Copyright © 2018 Salgado, Pinto, Bouth, Gobbo, Messias, Sandoval, dos Santos, Moreira, Vidal, Goulart, Barreto, da Silva, Frade, Spencer, Santos and Ribeiro-dos-Santos. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Salgado, Claudio Guedes
Pinto, Pablo
Bouth, Raquel Carvalho
Gobbo, Angélica Rita
Messias, Ana Caroline Cunha
Sandoval, Tatiana Vinasco
dos Santos, André Mauricio Ribeiro
Moreira, Fabiano Cordeiro
Vidal, Amanda Ferreira
Goulart, Luiz Ricardo
Barreto, Josafá Gonçalves
da Silva, Moisés Batista
Frade, Marco Andrey Cipriani
Spencer, John Stewart
Santos, Sidney
Ribeiro-dos-Santos, Ândrea
miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title_full miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title_fullStr miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title_full_unstemmed miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title_short miRNome Expression Analysis Reveals New Players on Leprosy Immune Physiopathology
title_sort mirnome expression analysis reveals new players on leprosy immune physiopathology
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5854644/
https://www.ncbi.nlm.nih.gov/pubmed/29593724
http://dx.doi.org/10.3389/fimmu.2018.00463
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