Journal article
A Metabolomic Severity Score for Airflow Obstruction and Emphysema
Metabolites, Vol.12(5), p.368
05/01/2022
DOI: 10.3390/metabo12050368
PMCID: PMC9143560
PMID: 35629872
Abstract
Chronic obstructive pulmonary disease (COPD) is a disease with marked metabolic disturbance. Previous studies have shown the association between single metabolites and lung function for COPD, but whether a combination of metabolites could predict phenotype is unknown. We developed metabolomic severity scores using plasma metabolomics from the Metabolon platform from two US cohorts of ever-smokers: the Subpopulations and Intermediate Outcome Measures in COPD Study (SPIROMICS) (n = 648; training/testing cohort; 72% non-Hispanic, white; average age 63 years) and the COPDGene Study (n = 1120; validation cohort; 92% non-Hispanic, white; average age 67 years). Separate adaptive LASSO (adaLASSO) models were used to model forced expiratory volume at one second (FEV1) and MESA-adjusted lung density using 762 metabolites common between studies. Metabolite coefficients selected by the adaLASSO procedure were used to create a metabolomic severity score (metSS) for each outcome. A total of 132 metabolites were selected to create a metSS for FEV1. The metSS-only models explained 64.8% and 31.7% of the variability in FEV1 in the training and validation cohorts, respectively. For MESA-adjusted lung density, 129 metabolites were selected, and metSS-only models explained 59.0% of the variability in the training cohort and 17.4% in the validation cohort. Regression models including both clinical covariates and the metSS explained more variability than either the clinical covariate or metSS-only models (53.4% vs. 46.4% and 31.6%) in the validation dataset. The metabolomic pathways for arginine biosynthesis; aminoacyl-tRNA biosynthesis; and glycine, serine, and threonine pathway were enriched by adaLASSO metabolites for FEV1. This is the first demonstration of a respiratory metabolomic severity score, which shows how a metSS can add explanation of variance to clinical predictors of FEV1 and MESA-adjusted lung density. The advantage of a comprehensive metSS is that it explains more disease than individual metabolites and can account for substantial collinearity among classes of metabolites. Future studies should be performed to determine whether metSSs are similar in younger, and more racially and ethnically diverse populations as well as whether a metabolomic severity score can predict disease development in individuals who do not yet have COPD.
Details
- Title: Subtitle
- A Metabolomic Severity Score for Airflow Obstruction and Emphysema
- Creators
- Suneeta Godbole - University of Colorado Anschutz Medical CampusWassim W. Labaki - University of MichiganKatherine A. Pratte - National Jewish HealthAndrew Hill - National Jewish HealthMatthew Moll - Brigham and Women's HospitalAnnette T. Hastie - Wake Forest UniversityStephen P. Peters - Wake Forest UniversityAndrew Gregory - Brigham and Women's HospitalVictor E. Ortega - Mayo Clinic in ArizonaDawn DeMeo - Brigham and Women's HospitalMichael H. Cho - Brigham and Women's HospitalSurya P. Bhatt - University of AlabamaJ. Michael Wells - University of AlabamaIgor Barjaktarevic - University of California, Los AngelesKathleen A. Stringer - University of MichiganAlejandro Comellas - Univ Iowa, Div Pulm & Crit Care, Iowa City, IA 52242 USAWanda O'Neal - Lung InstituteKaterina Kechris - University of Colorado Anschutz Medical CampusRussell P. Bowler - National Jewish Health
- Resource Type
- Journal article
- Publication Details
- Metabolites, Vol.12(5), p.368
- DOI
- 10.3390/metabo12050368
- PMID
- 35629872
- PMCID
- PMC9143560
- NLM abbreviation
- Metabolites
- ISSN
- 2218-1989
- eISSN
- 2218-1989
- Publisher
- Mdpi
- Number of pages
- 14
- Grant note
- AstraZeneca Pfizer COPD Foundation Bayer Pharmaceuticals; Bayer AG Boehringer-Ingelheim; Boehringer Ingelheim GlaxoSmithKline Novartis Sunovion U01 HL137880; U24 HL141762; HHSN268200900013C; HHSN268200900014C; HHSN268200900015C; HHSN268200900016C; HHSN268200900017C; HHSN268200900018C; HHSN268200900019C; HHSN268200900020C / NIH/NHLBI; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA; NIH National Heart Lung & Blood Institute (NHLBI) U01 HL089897; U01 HL089856 / National Heart, Lung, and Blood Institute; United States Department of Health & Human Services; National Institutes of Health (NIH) - USA; NIH National Heart Lung & Blood Institute (NHLBI) Genentech; Roche Holding
- Language
- English
- Date published
- 05/01/2022
- Academic Unit
- Pulmonary, Critical Care, and Occupational Medicine; Psychiatry; ICTS; Internal Medicine
- Record Identifier
- 9984359573402771
Metrics
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