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Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein

Sickle cell disease (SCD) is an inherited hemolytic anemia whose pathophysiology is driven by polymerization of the hemoglobin S (Hb S), leading to hemolysis and vaso-occlusive events. Inflammation is a fundamental component in these processes and a continuous inflammatory stimulus can lead to tissu...

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Autores principales: Torres, Lidiane S., Okumura, Jéssika V., Silva, Danilo G. H., Mimura, Kallyne K. O., Belini-Júnior, Édis, Oliveira, Renan G., Lobo, Clarisse L. C., Oliani, Sonia M., Bonini-Domingos, Claudia R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5089686/
https://www.ncbi.nlm.nih.gov/pubmed/27802331
http://dx.doi.org/10.1371/journal.pone.0165833
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author Torres, Lidiane S.
Okumura, Jéssika V.
Silva, Danilo G. H.
Mimura, Kallyne K. O.
Belini-Júnior, Édis
Oliveira, Renan G.
Lobo, Clarisse L. C.
Oliani, Sonia M.
Bonini-Domingos, Claudia R.
author_facet Torres, Lidiane S.
Okumura, Jéssika V.
Silva, Danilo G. H.
Mimura, Kallyne K. O.
Belini-Júnior, Édis
Oliveira, Renan G.
Lobo, Clarisse L. C.
Oliani, Sonia M.
Bonini-Domingos, Claudia R.
author_sort Torres, Lidiane S.
collection PubMed
description Sickle cell disease (SCD) is an inherited hemolytic anemia whose pathophysiology is driven by polymerization of the hemoglobin S (Hb S), leading to hemolysis and vaso-occlusive events. Inflammation is a fundamental component in these processes and a continuous inflammatory stimulus can lead to tissue damages. Thus, pro-resolving pathways emerge in order to restore the homeostasis. For example there is the annexin A1 (ANXA1), an endogenous anti-inflammatory protein involved in reducing neutrophil-endothelial interactions, accelerating neutrophil apoptosis and stimulating macrophage efferocytosis. We investigated the expression of ANXA1 in plasma of SCD patients and its relation with anemic, hemolytic and inflammatory parameters of the disease. Three SCD genotypes were considered: the homozygous inheritance for Hb S (Hb SS) and the association between Hb S and the hemoglobin variants D-Punjab (Hb SD) and C (Hb SC). ANXA1 and proinflammatory cytokines were quantified by ELISA in plasma of SCD patients and control individuals without hemoglobinopathies. Hematological and biochemical parameters were analyzed by flow cytometry and spectrophotometer. The plasma levels of ANXA1 were about three-fold lesser in SCD patients compared to the control group, and within the SCD genotypes the most elevated levels were found in Hb SS individuals (approximately three-fold higher). Proinflammatory cytokines were higher in SCD groups than in the control individuals. Anemic and hemolytic markers were higher in Hb SS and Hb SD genotypes compared to Hb SC patients. White blood cells and platelets count were higher in Hb SS genotype and were positively correlated to ANXA1 levels. We found that ANXA1 is down-regulated and differentially expressed within the SCD genotypes. Its expression seems to depend on the inflammatory, hemolytic and vaso-occlusive characteristics of the diseased. These data may lead to new biological targets for therapeutic intervention in SCD.
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spelling pubmed-50896862016-11-15 Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein Torres, Lidiane S. Okumura, Jéssika V. Silva, Danilo G. H. Mimura, Kallyne K. O. Belini-Júnior, Édis Oliveira, Renan G. Lobo, Clarisse L. C. Oliani, Sonia M. Bonini-Domingos, Claudia R. PLoS One Research Article Sickle cell disease (SCD) is an inherited hemolytic anemia whose pathophysiology is driven by polymerization of the hemoglobin S (Hb S), leading to hemolysis and vaso-occlusive events. Inflammation is a fundamental component in these processes and a continuous inflammatory stimulus can lead to tissue damages. Thus, pro-resolving pathways emerge in order to restore the homeostasis. For example there is the annexin A1 (ANXA1), an endogenous anti-inflammatory protein involved in reducing neutrophil-endothelial interactions, accelerating neutrophil apoptosis and stimulating macrophage efferocytosis. We investigated the expression of ANXA1 in plasma of SCD patients and its relation with anemic, hemolytic and inflammatory parameters of the disease. Three SCD genotypes were considered: the homozygous inheritance for Hb S (Hb SS) and the association between Hb S and the hemoglobin variants D-Punjab (Hb SD) and C (Hb SC). ANXA1 and proinflammatory cytokines were quantified by ELISA in plasma of SCD patients and control individuals without hemoglobinopathies. Hematological and biochemical parameters were analyzed by flow cytometry and spectrophotometer. The plasma levels of ANXA1 were about three-fold lesser in SCD patients compared to the control group, and within the SCD genotypes the most elevated levels were found in Hb SS individuals (approximately three-fold higher). Proinflammatory cytokines were higher in SCD groups than in the control individuals. Anemic and hemolytic markers were higher in Hb SS and Hb SD genotypes compared to Hb SC patients. White blood cells and platelets count were higher in Hb SS genotype and were positively correlated to ANXA1 levels. We found that ANXA1 is down-regulated and differentially expressed within the SCD genotypes. Its expression seems to depend on the inflammatory, hemolytic and vaso-occlusive characteristics of the diseased. These data may lead to new biological targets for therapeutic intervention in SCD. Public Library of Science 2016-11-01 /pmc/articles/PMC5089686/ /pubmed/27802331 http://dx.doi.org/10.1371/journal.pone.0165833 Text en © 2016 Torres et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Torres, Lidiane S.
Okumura, Jéssika V.
Silva, Danilo G. H.
Mimura, Kallyne K. O.
Belini-Júnior, Édis
Oliveira, Renan G.
Lobo, Clarisse L. C.
Oliani, Sonia M.
Bonini-Domingos, Claudia R.
Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title_full Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title_fullStr Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title_full_unstemmed Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title_short Inflammation in Sickle Cell Disease: Differential and Down-Expressed Plasma Levels of Annexin A1 Protein
title_sort inflammation in sickle cell disease: differential and down-expressed plasma levels of annexin a1 protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5089686/
https://www.ncbi.nlm.nih.gov/pubmed/27802331
http://dx.doi.org/10.1371/journal.pone.0165833
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