Type IV collagen turnover is predictive of mortality in COPD: a comparison to fibrinogen in a prospective analysis of the ECLIPSE cohort.


Journal

Respiratory research
ISSN: 1465-993X
Titre abrégé: Respir Res
Pays: England
ID NLM: 101090633

Informations de publication

Date de publication:
01 Apr 2019
Historique:
received: 14 02 2019
accepted: 14 03 2019
entrez: 3 4 2019
pubmed: 3 4 2019
medline: 6 8 2019
Statut: epublish

Résumé

Identifying subjects with chronic obstructive pulmonary disease (COPD) at high risk of exacerbation and mortality is key to aid individual management of COPD. The only FDA approved blood-based drug development biomarker for patients at high risk of mortality, is plasma fibrinogen. In this study, we benchmarked two biomarkers of basement membrane remodeling, a characteristic of COPD, against plasma fibrinogen alone and as a combination. The biomarkers of basement membrane remodeling are two neoepitopes from of the alpha 3 chain of type IV collagen (COL4A3). COL4A3 degradation was assessed by the biomarkers C4Ma3 and tumstatin (TUM) in year 1 plasma samples in 984 COPD subjects, 95 non-smoking controls and 95 smoking controls from the Evaluation of COPD Longitudinally to Identify Predictive Surrogate End-points (ECLIPSE) cohort. They were measured by competitive ELISA using monoclonal antibodies recognizing two specific MMP-generated cleavage site within COL4A3. The level of fibrinogen was previously assessed in year 1 plasma. In COPD subjects, plasma C4Ma3 levels were significantly correlated with plasma fibrinogen levels (0.389 (P < 0.0001)). Cox proportional-hazards regression adjusted for relevant confounders showed that high levels of plasma C4Ma3, but not TUM, were related to a higher risk of mortality (hazard ratio 5.12 (95% CI 2.28-11.50), P < 0.0001). High levels of plasma fibrinogen were not associated with all-cause mortality in this subpopulation, contradictory to published results. Whereas plasma C4Ma3 multiplied by fibrinogen showed to be related to a higher risk of mortality (hazard ratio 5.74 (95% CI 2.65-12.41), P < 0.0001). Plasma C4Ma3 levels were related to the number of hospitalizations due to COPD exacerbations in the year before study start (P = 0.0375). Fibrinogen levels were related to hospitalized exacerbations prior to study start (P = 0.0058) and were also related to future exacerbations (P < 0.0001). We compared herein fibrinogen, C4Ma3 and TUM as biomarkers for COPD prognosis. Fibrinogen was related to future exacerbation, whereas C4Ma3 and the combination of C4Ma3 with fibrinogen were superior to fibrinogen alone in predicting mortality. This pilot study suggests that the assessment of plasma C4Ma3 could be important for identifying COPD patients with a poor prognosis. NCT00292552 , GSK Study No. SCO104960.

Sections du résumé

BACKGROUND BACKGROUND
Identifying subjects with chronic obstructive pulmonary disease (COPD) at high risk of exacerbation and mortality is key to aid individual management of COPD. The only FDA approved blood-based drug development biomarker for patients at high risk of mortality, is plasma fibrinogen. In this study, we benchmarked two biomarkers of basement membrane remodeling, a characteristic of COPD, against plasma fibrinogen alone and as a combination. The biomarkers of basement membrane remodeling are two neoepitopes from of the alpha 3 chain of type IV collagen (COL4A3).
MATERIALS AND METHODS METHODS
COL4A3 degradation was assessed by the biomarkers C4Ma3 and tumstatin (TUM) in year 1 plasma samples in 984 COPD subjects, 95 non-smoking controls and 95 smoking controls from the Evaluation of COPD Longitudinally to Identify Predictive Surrogate End-points (ECLIPSE) cohort. They were measured by competitive ELISA using monoclonal antibodies recognizing two specific MMP-generated cleavage site within COL4A3. The level of fibrinogen was previously assessed in year 1 plasma.
RESULTS RESULTS
In COPD subjects, plasma C4Ma3 levels were significantly correlated with plasma fibrinogen levels (0.389 (P < 0.0001)). Cox proportional-hazards regression adjusted for relevant confounders showed that high levels of plasma C4Ma3, but not TUM, were related to a higher risk of mortality (hazard ratio 5.12 (95% CI 2.28-11.50), P < 0.0001). High levels of plasma fibrinogen were not associated with all-cause mortality in this subpopulation, contradictory to published results. Whereas plasma C4Ma3 multiplied by fibrinogen showed to be related to a higher risk of mortality (hazard ratio 5.74 (95% CI 2.65-12.41), P < 0.0001). Plasma C4Ma3 levels were related to the number of hospitalizations due to COPD exacerbations in the year before study start (P = 0.0375). Fibrinogen levels were related to hospitalized exacerbations prior to study start (P = 0.0058) and were also related to future exacerbations (P < 0.0001).
CONCLUSION CONCLUSIONS
We compared herein fibrinogen, C4Ma3 and TUM as biomarkers for COPD prognosis. Fibrinogen was related to future exacerbation, whereas C4Ma3 and the combination of C4Ma3 with fibrinogen were superior to fibrinogen alone in predicting mortality. This pilot study suggests that the assessment of plasma C4Ma3 could be important for identifying COPD patients with a poor prognosis.
TRIAL REGISTRATION BACKGROUND
NCT00292552 , GSK Study No. SCO104960.

Identifiants

pubmed: 30935391
doi: 10.1186/s12931-019-1026-x
pii: 10.1186/s12931-019-1026-x
pmc: PMC6444812
doi:

Substances chimiques

Autoantigens 0
Biomarkers 0
Collagen Type IV 0
type IV collagen alpha3 chain 0
Fibrinogen 9001-32-5

Banques de données

ClinicalTrials.gov
['NCT00292552']

Types de publication

Clinical Trial Comparative Study Journal Article Observational Study

Langues

eng

Pagination

63

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Auteurs

Sarah Rank Rønnow (SR)

Nordic Bioscience A/S, Herlev, Denmark. Sar@nordicbio.com.
University of Southern Denmark, The Faculty of Health Science, Odense, Denmark. Sar@nordicbio.com.

Jannie Marie Bülow Sand (JMB)

Nordic Bioscience A/S, Herlev, Denmark.

Lasse Løcke Langholm (LL)

Nordic Bioscience A/S, Herlev, Denmark.
The Faculty of Health and Medical sciences, University of Copenhagen, Copenhagen, Denmark.

Tina Manon-Jensen (T)

Nordic Bioscience A/S, Herlev, Denmark.

Morten Asser Karsdal (MA)

Nordic Bioscience A/S, Herlev, Denmark.

Ruth Tal-Singer (R)

GSK R&D, Collegeville, PA, USA.

Bruce E Miller (BE)

GSK R&D, Collegeville, PA, USA.

Jørgen Vestbo (J)

Division of Infection Immunity and Respiratory Medicine, The University of Manchester, Manchester Academic Health Science Centre, and Manchester University NHS Foundation Trust, Manchester, England.

Diana Julie Leeming (DJ)

Nordic Bioscience A/S, Herlev, Denmark.

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Classifications MeSH