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A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease

BACKGROUND: Chronic obstructive pulmonary disease (COPD) is a common lung disorder characterized by persistent and progressive airflow limitation as well as systemic changes. Metabolic changes in blood may help detect COPD in an earlier stage and predict prognosis. METHODS: We conducted a comprehens...

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Autores principales: Prokić, Ivana, Lahousse, Lies, de Vries, Maaike, Liu, Jun, Kalaoja, Marita, Vonk, Judith M., van der Plaat, Diana A., van Diemen, Cleo C., van der Spek, Ashley, Zhernakova, Alexandra, Fu, Jingyuan, Ghanbari, Mohsen, Ala-Korpela, Mika, Kettunen, Johannes, Havulinna, Aki S., Perola, Markus, Salomaa, Veikko, Lind, Lars, Ärnlöv, Johan, Stricker, Bruno H. C., Brusselle, Guy G., Boezen, H. Marike, van Duijn, Cornelia M., Amin, Najaf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7364599/
https://www.ncbi.nlm.nih.gov/pubmed/32677943
http://dx.doi.org/10.1186/s12890-020-01222-7
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author Prokić, Ivana
Lahousse, Lies
de Vries, Maaike
Liu, Jun
Kalaoja, Marita
Vonk, Judith M.
van der Plaat, Diana A.
van Diemen, Cleo C.
van der Spek, Ashley
Zhernakova, Alexandra
Fu, Jingyuan
Ghanbari, Mohsen
Ala-Korpela, Mika
Kettunen, Johannes
Havulinna, Aki S.
Perola, Markus
Salomaa, Veikko
Lind, Lars
Ärnlöv, Johan
Stricker, Bruno H. C.
Brusselle, Guy G.
Boezen, H. Marike
van Duijn, Cornelia M.
Amin, Najaf
author_facet Prokić, Ivana
Lahousse, Lies
de Vries, Maaike
Liu, Jun
Kalaoja, Marita
Vonk, Judith M.
van der Plaat, Diana A.
van Diemen, Cleo C.
van der Spek, Ashley
Zhernakova, Alexandra
Fu, Jingyuan
Ghanbari, Mohsen
Ala-Korpela, Mika
Kettunen, Johannes
Havulinna, Aki S.
Perola, Markus
Salomaa, Veikko
Lind, Lars
Ärnlöv, Johan
Stricker, Bruno H. C.
Brusselle, Guy G.
Boezen, H. Marike
van Duijn, Cornelia M.
Amin, Najaf
author_sort Prokić, Ivana
collection PubMed
description BACKGROUND: Chronic obstructive pulmonary disease (COPD) is a common lung disorder characterized by persistent and progressive airflow limitation as well as systemic changes. Metabolic changes in blood may help detect COPD in an earlier stage and predict prognosis. METHODS: We conducted a comprehensive study of circulating metabolites, measured by proton Nuclear Magnetic Resonance Spectroscopy, in relation with COPD and lung function. The discovery sample consisted of 5557 individuals from two large population-based studies in the Netherlands, the Rotterdam Study and the Erasmus Rucphen Family study. Significant findings were replicated in 12,205 individuals from the Lifelines-DEEP study, FINRISK and the Prospective Investigation of the Vasculature in Uppsala Seniors (PIVUS) studies. For replicated metabolites further investigation of causality was performed, utilizing genetics in the Mendelian randomization approach. RESULTS: There were 602 cases of COPD and 4955 controls used in the discovery meta-analysis. Our logistic regression results showed that higher levels of plasma Glycoprotein acetyls (GlycA) are significantly associated with COPD (OR = 1.16, P = 5.6 × 10(− 4) in the discovery and OR = 1.30, P = 1.8 × 10(− 6) in the replication sample). A bi-directional two-sample Mendelian randomization analysis suggested that circulating blood GlycA is not causally related to COPD, but that COPD causally increases GlycA levels. Using the prospective data of the same sample of Rotterdam Study in Cox-regression, we show that the circulating GlycA level is a predictive biomarker of COPD incidence (HR = 1.99, 95%CI 1.52–2.60, comparing those in the highest and lowest quartile of GlycA) but is not significantly associated with mortality in COPD patients (HR = 1.07, 95%CI 0.94–1.20). CONCLUSIONS: Our study shows that circulating blood GlycA is a biomarker of early COPD pathology.
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spelling pubmed-73645992020-07-20 A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease Prokić, Ivana Lahousse, Lies de Vries, Maaike Liu, Jun Kalaoja, Marita Vonk, Judith M. van der Plaat, Diana A. van Diemen, Cleo C. van der Spek, Ashley Zhernakova, Alexandra Fu, Jingyuan Ghanbari, Mohsen Ala-Korpela, Mika Kettunen, Johannes Havulinna, Aki S. Perola, Markus Salomaa, Veikko Lind, Lars Ärnlöv, Johan Stricker, Bruno H. C. Brusselle, Guy G. Boezen, H. Marike van Duijn, Cornelia M. Amin, Najaf BMC Pulm Med Research Article BACKGROUND: Chronic obstructive pulmonary disease (COPD) is a common lung disorder characterized by persistent and progressive airflow limitation as well as systemic changes. Metabolic changes in blood may help detect COPD in an earlier stage and predict prognosis. METHODS: We conducted a comprehensive study of circulating metabolites, measured by proton Nuclear Magnetic Resonance Spectroscopy, in relation with COPD and lung function. The discovery sample consisted of 5557 individuals from two large population-based studies in the Netherlands, the Rotterdam Study and the Erasmus Rucphen Family study. Significant findings were replicated in 12,205 individuals from the Lifelines-DEEP study, FINRISK and the Prospective Investigation of the Vasculature in Uppsala Seniors (PIVUS) studies. For replicated metabolites further investigation of causality was performed, utilizing genetics in the Mendelian randomization approach. RESULTS: There were 602 cases of COPD and 4955 controls used in the discovery meta-analysis. Our logistic regression results showed that higher levels of plasma Glycoprotein acetyls (GlycA) are significantly associated with COPD (OR = 1.16, P = 5.6 × 10(− 4) in the discovery and OR = 1.30, P = 1.8 × 10(− 6) in the replication sample). A bi-directional two-sample Mendelian randomization analysis suggested that circulating blood GlycA is not causally related to COPD, but that COPD causally increases GlycA levels. Using the prospective data of the same sample of Rotterdam Study in Cox-regression, we show that the circulating GlycA level is a predictive biomarker of COPD incidence (HR = 1.99, 95%CI 1.52–2.60, comparing those in the highest and lowest quartile of GlycA) but is not significantly associated with mortality in COPD patients (HR = 1.07, 95%CI 0.94–1.20). CONCLUSIONS: Our study shows that circulating blood GlycA is a biomarker of early COPD pathology. BioMed Central 2020-07-16 /pmc/articles/PMC7364599/ /pubmed/32677943 http://dx.doi.org/10.1186/s12890-020-01222-7 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research Article
Prokić, Ivana
Lahousse, Lies
de Vries, Maaike
Liu, Jun
Kalaoja, Marita
Vonk, Judith M.
van der Plaat, Diana A.
van Diemen, Cleo C.
van der Spek, Ashley
Zhernakova, Alexandra
Fu, Jingyuan
Ghanbari, Mohsen
Ala-Korpela, Mika
Kettunen, Johannes
Havulinna, Aki S.
Perola, Markus
Salomaa, Veikko
Lind, Lars
Ärnlöv, Johan
Stricker, Bruno H. C.
Brusselle, Guy G.
Boezen, H. Marike
van Duijn, Cornelia M.
Amin, Najaf
A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title_full A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title_fullStr A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title_full_unstemmed A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title_short A cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
title_sort cross-omics integrative study of metabolic signatures of chronic obstructive pulmonary disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7364599/
https://www.ncbi.nlm.nih.gov/pubmed/32677943
http://dx.doi.org/10.1186/s12890-020-01222-7
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