ArticleKidney international reports2024
A Metabolomics Approach to Identify Metabolites Associated With Mortality in Patients Receiving Maintenance Hemodialysis.
Article in Kidney international reports, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Metabolomic Profiling Delineates Stage-Associated Metabolic Remodelling in Cardiovascular-Kidney-Metabolic Syndrome.Diabetes/metabolism research and reviews · 2026Article
- Selected tryptophan metabolites and inflammatory molecules in hemodialyzed patients.Pharmacological reports : PR · 2026Article
- Integrated multi-omics reveals dysbiosis in hemodialysis patients: A multi-center study.PloS one · 2026Observational
- A time-updated scoring system derived from a nomogram to predict 3-month mortality in maintenance hemodialysis patients.Frontiers in aging · 2026Article
- Drivers and mechanisms of cognitive decline in chronic kidney disease.Nature reviews. Nephrology · 2025Review
- Prognostic implications of systemic immune-inflammation index and systemic inflammation response index in hemodialysis patients.BMC nephrology · 2025Article
- Association between inflammatory markers and mortality in hemodialysis patients.Jornal brasileiro de nefrologiaArticle
- Kynurenine levels are elevated in patients with heart failure with reduced ejection fraction or atrial fibrillation undergoing hemodialysis.Medicine internationalArticle
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Authors and funding
18 authors.
Funding
Abstract
Introduction: Uremic toxins contributing to increased risk of death remain largely unknown. We used untargeted metabolomics to identify plasma metabolites associated with mortality in patients receiving maintenance hemodialysis. Methods: We measured metabolites in serum samples from 522 Longitudinal US/Canada Incident Dialysis (LUCID) study participants. We assessed the association between metabolites and 1-year mortality, adjusting for age, sex, race, cardiovascular disease, diabetes, body mass index, serum albumin, Kt/Vurea, dialysis duration, and country. We modeled these associations using limma, a metabolite-wise linear model with empirical Bayesian inference, and 2 machine learning (ML) models: Least absolute shrinkage and selection operator (LASSO) and random forest (RF). We accounted for multiple testing using a false discovery rate (pFDR) adjustment. We defined significant mortality-metabolite associations as pFDR < 0.1 in the limma model and metabolites of at least medium importance in both ML models. Results: The mean age of the participants was 64 years, the mean dialysis duration was 35 days, and there were 44 deaths (8.4%) during a 1-year follow-up period. Two metabolites were significantly associated with 1-year mortality. Quinolinate levels (a kynurenine pathway metabolite) were 1.72-fold higher in patients who died within year 1 compared with those who did not (pFDR, 0.009), wheras mesaconate levels (an emerging immunometabolite) were 1.57-fold higher (pFDR, 0.002). An additional 42 metabolites had high importance as Conclusion: Quinolinate and mesaconate were significantly associated with a 1-year risk of death in incident patients receiving maintenance hemodialysis. External validation of our findings is needed.
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