4.6 Article

Human blood plasma biomarkers of diet and weight loss among centrally obese subjects in a New Nordic Diet intervention

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FRONTIERS IN NUTRITION
卷 10, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fnut.2023.1198531

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plasma metabolomics; H-1 NMR; ketone bodies; weight loss; lipoproteins

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The New Nordic Diet (NND) has been found to have a positive impact on weight loss and blood pressure reduction in obese individuals. This study examined the differences in blood plasma metabolites and lipoprotein biomarkers between subjects who followed the Average Danish Diet (ADD) or NND. The findings suggest that the NND affects the plasma metabolome and lipoprotein profiles, with specific biomarkers such as HDL-1 cholesterol, apolipoprotein A1, phospholipids, and ketone bodies playing a significant role.
ScopeThe New Nordic Diet (NND) has been shown to promote weight loss and lower blood pressure amongst obese people. This study investigates blood plasma metabolite and lipoprotein biomarkers differentiating subjects who followed Average Danish Diet (ADD) or NND. The study also evaluates how the individual response to the diet is reflected in the metabolic differences between NND subjects who lost or maintained their pre-intervention weight. MethodsCentrally obese Danes (BMI >25) followed NND (90 subjects) or ADD (56 subjects) for 6 months. Fasting blood plasma samples, collected at three time-points during the intervention, were screened for metabolites and lipoproteins (LPs) using proton nuclear magnetic resonance spectroscopy. In total, 154 metabolites and 65 lipoproteins were analysed. ResultsThe NND showed a relatively small but significant effect on the plasma metabolome and lipoprotein profiles, with explained variations ranging from 0.6% for lipoproteins to 4.8% for metabolites. A total of 38 metabolites and 11 lipoproteins were found to be affected by the NND. The primary biomarkers differentiating the two diets were found to be HDL-1 cholesterol, apolipoprotein A1, phospholipids, and ketone bodies (3-hydroxybutyric acid, acetone, and acetoacetic acid). The increased levels of ketone bodies detected in the NND group inversely associated with the decrease in diastolic blood pressure of the NND subjects. The study also showed that body weight loss among the NND subjects was weakly associated with plasma levels of citrate. ConclusionThe main plasma metabolites associated with NND were acetate, methanol and 3-hydroxybutyrate. The metabolic changes associated with the NND-driven weight loss are mostly pronounced in energy and lipid metabolism.

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