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PurposeThe current study aimed to identify metabolites associated with age-related macular degeneration (AMD) by performing the largest metabolome association analysis in AMD to date, as well as aiming to determine the effect of AMD-associated genetic variants on metabolite levels and investigate associations between the identified metabolites and activity of the complement system, one of the main AMD-associated disease pathways.DesignCase-control association analysis of metabolomics data.ParticipantsFive European cohorts consisting of 2267 AMD patients and 4266 control participants.MethodsMetabolomics was performed using a high-throughput proton nuclear magnetic resonance metabolomics platform, which allows quantification of 146 metabolite measurements and 79 derivative values. Metabolome-AMD associations were studied using univariate logistic regression analyses. The effect of 52 AMD-associated genetic variants on the identified metabolites was investigated using linear regression. In addition, associations between the identified metabolites and activity of the complement pathway (defined by the C3d-to-C3 ratio) were investigated using linear regression.Main outcome measuresMetabolites associated with AMD.ResultsWe identified 60 metabolites that were associated significantly with AMD, including increased levels of large and extra-large high-density lipoprotein (HDL) subclasses and decreased levels of very low-density lipoprotein (VLDL), amino acids, and citrate. Of 52 AMD-associated genetic variants, 7 variants were associated significantly with 34 of the identified metabolites. The strongest associations were identified for genetic variants located in or near genes involved in lipid metabolism (ABCA1, CETP, APOE, and LIPC) with metabolites belonging to the large and extra-large HDL subclasses. Also, 57 of 60 metabolites were associated significantly with complement activation levels, independent of AMD status. Increased large and extra-large HDL levels and decreased VLDL and amino acid levels were associated with increased complement activation.ConclusionsLipoprotein levels were associated with AMD-associated genetic variants, whereas decreased essential amino acids may point to nutritional deficiencies in AMD. We observed strong associations between the vast majority of the AMD-associated metabolites and systemic complement activation levels, independent of AMD status. This may indicate biological interactions between the main AMD disease pathways and suggests that multiple pathways may need to be targeted simultaneously for successful treatment of AMD.

More information Original publication

DOI

10.1016/j.ophtha.2020.06.020

Type

Journal article

Publication Date

2020-12-01T00:00:00+00:00

Volume

127

Pages

1693 - 1709

Total pages

16

Addresses

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Keywords

EYE-RISK Consortium, Humans, Macular Degeneration, Lipase, Apolipoproteins E, Case-Control Studies, Genomics, Complement Activation, Aged, Aged, 80 and over, Middle Aged, Female, Male, Cholesterol Ester Transfer Proteins, Metabolomics, Metabolome, ATP Binding Cassette Transporter 1, Proton Magnetic Resonance Spectroscopy