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The Dutch HbA1c Lifestyle Study (DAF-Study): Seasonal Variation of HbA1c in the Dutch Diabetes Population—Associations with Macronutrient Intake and Physical Activity

  • Erwin Kemna*
  • , Henk Bilo
  • , Martine Deckers
  • , Christiaan Slim
  • , Annemarieke Loot
  • , Linda M. Henricks
  • , Jacoline Brinkman
  • , Jody van den Ouweland
  • , Steef Kurstjens
  • , Madeleen Bosma
  • , Iris van Vlodrop
  • , Pauline Verschuure
  • , Jurgen Kooren
  • , Stefan Coolen
  • , Karin Mohrmann
  • , Martin Schuijt
  • , Johannes Krabbe
  • , Robert Wever
  • , Marlies Oostendorp
  • , Ivon van der Linden
  • Margriet van Kogelenberg, Margo Molhoek, Mieke Koenders, Silvia Endenburg, Roseri de Beer, Cas Weykamp
*Corresponding author for this work
  • Beatrix Hospital
  • University of Groningen
  • Onze Lieve Vrouwe Gasthuis
  • Certe Medical Diagnostic & Advice
  • Laboratory of Clinical Chemistry and Hematology
  • Leiden University
  • Amsterdam UMC - University of Amsterdam
  • Ziekenhuis St Jansdal
  • Canisius Wilhelmina Hospital
  • Jeroen Bosch Ziekenhuis
  • Eurofins SCAL
  • Haga Teaching Hospital
  • Anna Hospital
  • Unilabs
  • Laboratorio de Médicos (LabdeMed)
  • Star-shl
  • Slingeland Hospital
  • Medisch Spectrum Twente
  • Medical Laboratory Services
  • Rijnstate Hospital
  • Gelre Ziekenhuizen
  • Diagnostiek voor U (Medical Diagnostic Center)
  • Elkerliek Ziekenhuis
  • Gelderland Valley Hospital
  • Rivierenland Hospital

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Background/Objectives: Seasonal variation in hemoglobin A1c (HbA1c) values has been previously documented, with physical activity (PA) and macronutrient intake (MNI) suggested as potential drivers. This study combines seasonal mean HbA1c values from the Dutch (pre)diabetes population with national survey data on PA and MNI from 2018 to 2021 to identify key associations. Methods: HbA1c data were collected from 24 laboratory organizations in the Netherlands and Dutch Caribbean. MNI and total energy intake data were extracted from the Dutch National Food Consumption Survey, while PA data came from the Dutch National Sports Participation Index Survey. Weighting factors were applied to align PA and MNI data with HbA1c data. Seasonal averages were analyzed for significant differences, and a prediction model compared PA and MNI with actual HbA1c values. Results: Among 5,635,920 HbA1c results, the average HbA1c increased by 0.71 mmol/mol (NGSP 0.06%) over four years, with an overall mean of 52.4 mmol/mol (NGSP 7.0%). Seasonal HbA1c variation showed a dip in summer–autumn and a peak in winter–spring (1.2 mmol/mol; NGSP 0.11%; p < 0.0001). MNI, except for total energy intake (which peaked in summer; p < 0.001), showed no significant trends or association with HbA1c (p = 0.157). PA decreased by 7.2% over the study period, with seasonal peaks in summer–autumn, showing an inverse relationship with HbA1c (p < 0.0001). During the COVID-19 lockdowns, PA significantly decreased, and mean HbA1c values increased more markedly than in previous years. The prediction model confirmed PA as a significant driver of seasonal HbA1c variation (p = 0.004). Conclusions: These findings suggest that PA is the strongest driver of seasonal variation in HbA1c. Public health initiatives and support programs promoting physical activity are essential for improving HbA1c regulation.

Original languageEnglish
Article number135
JournalDiabetology
Volume6
Issue number11
DOIs
Publication statusPublished - 1 Nov 2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • COVID-19
  • HbA1c
  • macronutrients intake
  • physical activity
  • seasonal variation

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