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SHR Neuro Krebs Kardio Lipid Stoffw Microb

Lasky-Su, J; Dahlin, A; Litonjua, AA; Rogers, AJ; McGeachie, MJ; Baron, RM; Gazourian, L; Barragan-Bradford, D; Fredenburgh, LE; Choi, AMK; Mogensen, KM; Quraishi, SA; Amrein, K; Christopher, KB.
Metabolome alterations in severe critical illness and vitamin D status.
Crit Care. 2017; 21(1):193-193 Doi: 10.1186/s13054-017-1794-y [OPEN ACCESS]
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Co-Autor*innen der Med Uni Graz
Amrein Karin
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Abstract:
Metabolic homeostasis is substantially disrupted in critical illness. Given the pleiotropic effects of vitamin D, we hypothesized that metabolic profiles differ between critically ill patients relative to their vitamin D status. We performed a metabolomics study on biorepository samples collected from a single academic medical center on 65 adults with systemic inflammatory response syndrome or sepsis treated in a 20-bed medical ICU between 2008 and 2010. To identify key metabolites and metabolic pathways related to vitamin D status in critical illness, we first generated metabolomic data using gas and liquid chromatography mass spectroscopy. We followed this by partial least squares-discriminant analysis to identify individual metabolites that were significant. We then interrogated the entire metabolomics profile using metabolite set enrichment analysis to identify groups of metabolites and pathways that were differentiates of vitamin D status. Finally we performed logistic regression to construct a network model of chemical-protein target interactions important in vitamin D status. Metabolomic profiles significantly differed in critically ill patients with 25(OH)D ≤ 15 ng/ml relative to those with levels >15 ng/ml. In particular, increased 1,5-anhydroglucitol, tryptophan betaine, and 3-hydroxyoctanoate as well as decreased 2-arachidonoyl-glycerophosphocholine and N-6-trimethyllysine were strong predictors of 25(OH)D >15 ng/ml. The combination of these five metabolites led to an area under the curve for discrimination for 25(OH)D > 15 ng/ml of 0.82 (95% CI 0.71-0.93). The metabolite pathways related to glutathione metabolism and glutamate metabolism are significantly enriched with regard to vitamin D status. Vitamin D status is associated with differential metabolic profiles during critical illness. Glutathione and glutamate pathway metabolism, which play principal roles in redox regulation and immunomodulation, respectively, were significantly altered with vitamin D status.
Find related publications in this database (using NLM MeSH Indexing)
APACHE -
Academic Medical Centers - organization & administration
Adult -
Aged -
Boston -
Cohort Studies -
Critical Illness - epidemiology
Critical Illness - rehabilitation
Discriminant Analysis -
Female -
Humans -
Logistic Models -
Male -
Metabolome - physiology
Middle Aged -
Registries - statistics & numerical data
Systemic Inflammatory Response Syndrome - blood
Systemic Inflammatory Response Syndrome - complications
Vitamin D - analogs & derivatives
Vitamin D - analysis
Vitamin D - blood
Vitamin D Deficiency - blood

Find related publications in this database (Keywords)
Vitamin D
Metabolite
Metabolomics
Homeostasis
Critical illness
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