Publication Details

Category Text Publication
Reference Category Journals
DOI 10.1093/jn/nxab077
Title (Primary) Dietary macronutrient composition in relation to circulating HDL and non-HDL cholesterol: A federated individual-level analysis of Cross-sectional data from adolescents and adults in 8 European studies
Author Pinart, M.; Jeran, S.; Boeing, H.; Stelmach-Mardas, M.; Standl, M.; Schulz, H.; Harris, C.; von Berg, A.; Herberth, G. ORCID logo ; Koletzko, S.; Linseisen, J.; Breuninger, T.A.; Nöthlings, U.; Barbaresko, J.; Benda, S.; Lachat, C.; Yang, C.; Gasparini, P.; Robino, A.; Rojo-Martínez, G.; Castaño, L.; Guillaume, M.; Donneau, A.-F.; Hoge, A.; Gillain, N.; Avraam, D.; Burton, P.R.; Bouwman, J.; Pischon, T.; Nimptsch, K.
Source Titel Journal of Nutrition
Year 2021
Department IMMU
Volume 151
Issue 8
Page From 2317
Page To 2329
Language englisch
Topic T9 Healthy Planet
Keywords energy density models; substitution; blood lipids; dietary intake; fatty acids; carbohydrates; adults; adolescents; data sharing; data integration
Abstract

Background

Associations between increased dietary fat and decreased carbohydrate intake with circulating HDL and non-HDL cholesterol have not been conclusively determined.

Objective

We assessed these relations in 8 European observational human studies participating in the European Nutritional Phenotype Assessment and Data Sharing Initiative (ENPADASI) using harmonized data.

Methods

Dietary macronutrient intake was recorded using study-specific dietary assessment tools. Main outcome measures were lipoprotein cholesterol concentrations: HDL cholesterol (mg/dL) and non-HDL cholesterol (mg/dL). A cross-sectional analysis on 5919 participants (54% female) aged 13–80 y was undertaken using the statistical platform DataSHIELD that allows remote/federated nondisclosive analysis of individual-level data. Generalized linear models (GLM) were fitted to assess associations between replacing 5% of energy from carbohydrates with equivalent energy from total fats, SFAs, MUFAs, or PUFAs with circulating HDL cholesterol and non-HDL cholesterol. GLM were adjusted for study source, age, sex, smoking status, alcohol intake and BMI.

Results

The replacement of 5% of energy from carbohydrates with total fats or MUFAs was statistically significantly associated with 0.67 mg/dL (95% CI: 0.40, 0.94) or 0.99 mg/dL (95% CI: 0.37, 1.60) higher HDL cholesterol, respectively, but not with non-HDL cholesterol concentrations. The replacement of 5% of energy from carbohydrates with SFAs or PUFAs was not associated with HDL cholesterol, but SFAs were statistically significantly associated with 1.94 mg/dL (95% CI: 0.08, 3.79) higher non-HDL cholesterol, and PUFAs with –3.91 mg/dL (95% CI: –6.98, –0.84) lower non-HDL cholesterol concentrations. A statistically significant interaction by sex for the association of replacing carbohydrates with MUFAs and non-HDL cholesterol was observed, showing a statistically significant inverse association in males and no statistically significant association in females. We observed no statistically significant interaction by age.

Conclusions

The replacement of dietary carbohydrates with fats had favorable effects on lipoprotein cholesterol concentrations in European adolescents and adults when fats were consumed as MUFAs or PUFAs but not as SFAs.

Persistent UFZ Identifier https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=25550
Pinart, M., Jeran, S., Boeing, H., Stelmach-Mardas, M., Standl, M., Schulz, H., Harris, C., von Berg, A., Herberth, G., Koletzko, S., Linseisen, J., Breuninger, T.A., Nöthlings, U., Barbaresko, J., Benda, S., Lachat, C., Yang, C., Gasparini, P., Robino, A., Rojo-Martínez, G., Castaño, L., Guillaume, M., Donneau, A.-F., Hoge, A., Gillain, N., Avraam, D., Burton, P.R., Bouwman, J., Pischon, T., Nimptsch, K. (2021):
Dietary macronutrient composition in relation to circulating HDL and non-HDL cholesterol: A federated individual-level analysis of Cross-sectional data from adolescents and adults in 8 European studies
J. Nutr. 151 (8), 2317 - 2329 10.1093/jn/nxab077