Study2020Open access

Caffeine and Caffeine Metabolites in Relation to Insulin Resistance and Beta Cell Function in U.S. Adults

Lee S, Min JY, Min KB

Nutrients · 16 citations

How it was studied

Design
Cross-sectional study (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
National Research Foundation of Korea
Grants
National Research Foundation of Korea (2019R1A2C1004966)

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2020-06-15 · Nutrients · vol. 12 · issue 6 · p. 1783
Publisher
Multidisciplinary Digital Publishing Institute
Cited
23 citations · more than 82% of similar papers · 1.6× the field average
References
39 works
Access
Open access (journal) · CC-BY
Research areas
Coffee research and impacts · Tea Polyphenols and Effects · Eating Disorders and Behaviors
Keywords
Paraxanthine, Caffeine, Theophylline, Theobromine, Insulin resistance, Internal medicine, Chemistry, Endocrinology, Urinary system, Homeostatic model assessment, Quartile, Physiology, Medicine, Insulin, CYP1A2, Metabolism, Confidence interval
MeSH
humans, insulin resistance, caffeine, blood glucose, nutrition surveys, adult, aged, middle aged, united states, female, male, insulin-secreting cells

3 authors

From KR

  • Sohyae LeeSeoul National University
  • Jin‐Young MinSeoul National University
  • Kyoung‐Bok Min · correspondingSeoul National University

Abstract

The relationship between caffeine and insulin resistance (IR) has been assessed only in terms of caffeine intake, and the association between caffeine and beta cell function (BCF) remains unclear. This study examines the association between urinary caffeine and its metabolites, IR, and BCF in nondiabetic, noninstitutionalized US adults in order to account for the inter-individual differences in caffeine metabolism. Data on urinary caffeine and its metabolites, IR and BCF from adults aged 20 years and older who participated in the 2009-2010 and 2011-2012 National Health and Nutrition Examination Surveys were analyzed (n for caffeine = 994). IR and BCF were assessed using homeostatic model assessment (HOMA) and urinary caffeine and its metabolites were measured using high-performance liquid chromatography-electrospray ionization-tandem quadrupole mass spectrometry. After adjusting for all covariates, increases in urinary 1,3-DMU, 1,7-DMU, 1,3,7-TMU, theophylline, paraxanthine, caffeine, and AAMU were significantly associated with increased HOMA-IR and HOMA-β (HOMA of insulin resistance and beta cell function). Compared with individuals in the lowest quartile of urinary 1,3-DMU, 1,7-DMU, 1,3,7-TMU, theophylline, paraxanthine, caffeine, and AAMU, the regression coefficients for HOMA-IR and HOMA-β were significantly higher among those in the highest quartile. After stratification by prediabetes status, HOMA-IR and HOMA-β showed significant positive associations with urinary caffeine and its metabolites among subjects with normal fasting plasma glucose levels. Our cross-sectional study showed that caffeine and its metabolites were positively related to IR and BCF.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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