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Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters

Rationale. Heart failure (HF) is accompanied by the development of an imbalance between oxygen- and nitric oxide-derived free radical production leading to protein nitration. Both chlorinating and peroxidase cycle of Myeloperoxidase (MPO) contribute to oxidative and nitrosative stress and are involv...

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Autores principales: Cabassi, Aderville, Binno, Simone Maurizio, Tedeschi, Stefano, Graiani, Gallia, Galizia, Cinzia, Bianconcini, Michele, Coghi, Pietro, Fellini, Federica, Ruffini, Livia, Govoni, Paolo, Piepoli, Massimo, Perlini, Stefano, Regolisti, Giuseppe, Fiaccadori, Enrico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619849/
https://www.ncbi.nlm.nih.gov/pubmed/26539521
http://dx.doi.org/10.1155/2015/691693
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author Cabassi, Aderville
Binno, Simone Maurizio
Tedeschi, Stefano
Graiani, Gallia
Galizia, Cinzia
Bianconcini, Michele
Coghi, Pietro
Fellini, Federica
Ruffini, Livia
Govoni, Paolo
Piepoli, Massimo
Perlini, Stefano
Regolisti, Giuseppe
Fiaccadori, Enrico
author_facet Cabassi, Aderville
Binno, Simone Maurizio
Tedeschi, Stefano
Graiani, Gallia
Galizia, Cinzia
Bianconcini, Michele
Coghi, Pietro
Fellini, Federica
Ruffini, Livia
Govoni, Paolo
Piepoli, Massimo
Perlini, Stefano
Regolisti, Giuseppe
Fiaccadori, Enrico
author_sort Cabassi, Aderville
collection PubMed
description Rationale. Heart failure (HF) is accompanied by the development of an imbalance between oxygen- and nitric oxide-derived free radical production leading to protein nitration. Both chlorinating and peroxidase cycle of Myeloperoxidase (MPO) contribute to oxidative and nitrosative stress and are involved in tyrosine nitration of protein. Ceruloplasmin (Cp) has antioxidant function through its ferroxidase I (FeO(x)I) activity and has recently been proposed as a physiological defense mechanism against MPO inappropriate actions. Objective. We investigated the relationship between plasma MPO-related chlorinating activity, Cp and FeO(x)I, and nitrosative stress, inflammatory, neurohormonal, and nutritional biomarkers in HF patients. Methods and Results. In chronic HF patients (n = 81, 76 ± 9 years, NYHA Class II (26); Class III (29); Class IV (26)) and age-matched controls (n = 17, 75 ± 11 years, CTR), plasma MPO chlorinating activity, Cp, FeO(x)I, nitrated protein, free Malondialdehyde, BNP, norepinephrine, hsCRP, albumin, and prealbumin were measured. Plasma MPO chlorinating activity, Cp, BNP, norepinephrine, and hsCRP were increased in HF versus CTR. FeO(x)I, albumin, and prealbumin were decreased in HF. MPO-related chlorinating activity was positively related to Cp (r = 0.363, P < 0.001), nitrated protein, hsCRP, and BNP and inversely to albumin. Conclusions. Plasma MPO chlorinated activity is increased in elderly chronic HF patients and positively associated with Cp, inflammatory, neurohormonal, and nitrosative parameters suggesting a role in HF progression.
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spelling pubmed-46198492015-11-04 Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters Cabassi, Aderville Binno, Simone Maurizio Tedeschi, Stefano Graiani, Gallia Galizia, Cinzia Bianconcini, Michele Coghi, Pietro Fellini, Federica Ruffini, Livia Govoni, Paolo Piepoli, Massimo Perlini, Stefano Regolisti, Giuseppe Fiaccadori, Enrico Biomed Res Int Research Article Rationale. Heart failure (HF) is accompanied by the development of an imbalance between oxygen- and nitric oxide-derived free radical production leading to protein nitration. Both chlorinating and peroxidase cycle of Myeloperoxidase (MPO) contribute to oxidative and nitrosative stress and are involved in tyrosine nitration of protein. Ceruloplasmin (Cp) has antioxidant function through its ferroxidase I (FeO(x)I) activity and has recently been proposed as a physiological defense mechanism against MPO inappropriate actions. Objective. We investigated the relationship between plasma MPO-related chlorinating activity, Cp and FeO(x)I, and nitrosative stress, inflammatory, neurohormonal, and nutritional biomarkers in HF patients. Methods and Results. In chronic HF patients (n = 81, 76 ± 9 years, NYHA Class II (26); Class III (29); Class IV (26)) and age-matched controls (n = 17, 75 ± 11 years, CTR), plasma MPO chlorinating activity, Cp, FeO(x)I, nitrated protein, free Malondialdehyde, BNP, norepinephrine, hsCRP, albumin, and prealbumin were measured. Plasma MPO chlorinating activity, Cp, BNP, norepinephrine, and hsCRP were increased in HF versus CTR. FeO(x)I, albumin, and prealbumin were decreased in HF. MPO-related chlorinating activity was positively related to Cp (r = 0.363, P < 0.001), nitrated protein, hsCRP, and BNP and inversely to albumin. Conclusions. Plasma MPO chlorinated activity is increased in elderly chronic HF patients and positively associated with Cp, inflammatory, neurohormonal, and nitrosative parameters suggesting a role in HF progression. Hindawi Publishing Corporation 2015 2015-10-11 /pmc/articles/PMC4619849/ /pubmed/26539521 http://dx.doi.org/10.1155/2015/691693 Text en Copyright © 2015 Aderville Cabassi et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cabassi, Aderville
Binno, Simone Maurizio
Tedeschi, Stefano
Graiani, Gallia
Galizia, Cinzia
Bianconcini, Michele
Coghi, Pietro
Fellini, Federica
Ruffini, Livia
Govoni, Paolo
Piepoli, Massimo
Perlini, Stefano
Regolisti, Giuseppe
Fiaccadori, Enrico
Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title_full Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title_fullStr Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title_full_unstemmed Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title_short Myeloperoxidase-Related Chlorination Activity Is Positively Associated with Circulating Ceruloplasmin in Chronic Heart Failure Patients: Relationship with Neurohormonal, Inflammatory, and Nutritional Parameters
title_sort myeloperoxidase-related chlorination activity is positively associated with circulating ceruloplasmin in chronic heart failure patients: relationship with neurohormonal, inflammatory, and nutritional parameters
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619849/
https://www.ncbi.nlm.nih.gov/pubmed/26539521
http://dx.doi.org/10.1155/2015/691693
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