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    Por favor, use este identificador para citar o enlazar este ítem:https://uvadoc.uva.es/handle/10324/70983

    Título
    Metabolomic patterns, redox-related genes and metals, and bone fragility endpoints in the Hortega Study
    Autor
    Gálvez Fernandez, Marta
    Rodríguez Hernández, Zulema
    Grau Pérez, María
    Chaves, Felipe Javier
    García García, Ana Bárbara
    Amigo, Nuria
    Monleon, Daniel
    García Barrera, Tamara
    Gómez Ariza, José L.
    Briongos Figuero, Laisa SocorroAutoridad UVA Orcid
    Pérez Castrillon, José LuisAutoridad UVA
    Redón Mas, Josep
    Téllez Plaza, Maria
    Martín Escudero, Juan CarlosAutoridad UVA
    Año del Documento
    2023
    Editorial
    Elsevier
    Descripción
    Producción Científica
    Documento Fuente
    Free Radical Biology and Medicine, 2023, vol. 194, p. 52-61.
    Abstract
    Background: The potential joint influence of metabolites on bone fragility has been rarely evaluated. We assessed the association of plasma metabolic patterns with bone fragility endpoints (primarily, incident osteoporosis-related bone fractures, and, secondarily, bone mineral density BMD) in the Hortega Study participants. Redox balance plays a key role in bone metabolism. We also assessed differential associations in participant subgroups by redox-related metal exposure levels and candidate genetic variants. Material and methods: In 467 participants older than 50 years from the Hortega Study, a representative sample from a region in Spain, we estimated metabolic principal components (mPC) for 54 plasma metabolites from NMR-spectrometry. Metals biomarkers were measured in plasma by AAS and in urine by HPLC-ICPMS. Redox-related SNPs (N = 341) were measured by oligo-ligation assay. Results: The prospective association with incident bone fractures was inverse for mPC1 (non-essential and essential amino acids, including branched-chain, and bacterial co-metabolites, including isobutyrate, trimethylamines and phenylpropionate, versus fatty acids and VLDL) and mPC4 (HDL), but positive for mPC2 (essential amino acids, including aromatic, and bacterial co-metabolites, including isopropanol and methanol). Findings from BMD models were consistent. Participants with decreased selenium and increased antimony, arsenic and, suggestively, cadmium exposures showed higher mPC2-associated bone fractures risk. Genetic variants annotated to 19 genes, with the strongest evidence for NCF4, NOX4 and XDH, showed differential metabolic-related bone fractures risk. Conclusions: Metabolic patterns reflecting amino acids, microbiota co-metabolism and lipid metabolism were associated with bone fragility endpoints. Carriers of redox-related variants may benefit from metabolic interventions to prevent the consequences of bone fragility depending on their antimony, arsenic, selenium, and, possibly, cadmium, exposure levels.
    Palabras Clave
    Metabolomics
    Bone mineral density
    Osteoporosis-related bone fractures
    Candidate genes
    Metals
    Redox
    ISSN
    0891-5849
    Revisión por pares
    SI
    DOI
    10.1016/j.freeradbiomed.2022.11.007
    Patrocinador
    The work was funded by the´o State Research Agency at the Ministerio de Ciencia Innovaci´on y Universidades of Spain (PID2019- 108973RB-C21, PID2019-108973RB-C22 and PCIN-2017-117); the Generalitat Valenciana of Spain (IDIFEDER/2021/072, GRUPOS 03/ 101, PROMETEO/2009/029, ACOMP/2013/039, IDIFEDER/2021/072 and GRISOLIAP/2021/119); the EU Joint Programming Initiative Healthy Diet Healthy Life (HDHL) GUTMOM (INTIMIC-085); the Strategic Action for Research in Health sciences [CP12/03080, PI15/00071, PI10/0082, PI13/01848, PI14/00874, PI16/01402, PI17/00544 and PI11/00726]; CIBER Fisiopatología Obesidad y Nutrici´on (CIBEROBN) (CIBER-02-08-2009, CB06/03 and CB12/03/30016); the Castilla-Leon Government (GRS/279/A/08) and European Network of Excellence Ingenious Hypercare (EPSS- 037093) from the European Commission. The Strategic Action for Research in Health sciences and CIBEROBN are initiatives from Carlos III Health Institute Madrid and co-funded with European Funds for Regional Development (FEDER). M.G-P received the support of a fellowship from “la Caixa” Foundation (ID 100010434, fellowship code LCF/BQ/IN18/11660001).
    Version del Editor
    https://www.sciencedirect.com/science/article/pii/S0891584922009698
    Idioma
    eng
    URI
    https://uvadoc.uva.es/handle/10324/70983
    Tipo de versión
    info:eu-repo/semantics/publishedVersion
    Derechos
    openAccess
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