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Consumption of meat is associated with higher fasting glucose and insulin concentrations regardless of glucose and insulin genetic risk scores: a meta-analysis of 50,345 Caucasians.

Authors :
Fretts AM
Follis JL
Nettleton JA
Lemaitre RN
Ngwa JS
Wojczynski MK
Kalafati IP
Varga TV
Frazier-Wood AC
Houston DK
Lahti J
Ericson U
van den Hooven EH
Mikkilä V
Kiefte-de Jong JC
Mozaffarian D
Rice K
Renström F
North KE
McKeown NM
Feitosa MF
Kanoni S
Smith CE
Garcia ME
Tiainen AM
Sonestedt E
Manichaikul A
van Rooij FJ
Dimitriou M
Raitakari O
Pankow JS
Djoussé L
Province MA
Hu FB
Lai CQ
Keller MF
Perälä MM
Rotter JI
Hofman A
Graff M
Kähönen M
Mukamal K
Johansson I
Ordovas JM
Liu Y
Männistö S
Uitterlinden AG
Deloukas P
Seppälä I
Psaty BM
Cupples LA
Borecki IB
Franks PW
Arnett DK
Nalls MA
Eriksson JG
Orho-Melander M
Franco OH
Lehtimäki T
Dedoussis GV
Meigs JB
Siscovick DS
Source :
The American journal of clinical nutrition [Am J Clin Nutr] 2015 Nov; Vol. 102 (5), pp. 1266-78. Date of Electronic Publication: 2015 Sep 09.
Publication Year :
2015

Abstract

Background: Recent studies suggest that meat intake is associated with diabetes-related phenotypes. However, whether the associations of meat intake and glucose and insulin homeostasis are modified by genes related to glucose and insulin is unknown.<br />Objective: We investigated the associations of meat intake and the interaction of meat with genotype on fasting glucose and insulin concentrations in Caucasians free of diabetes mellitus.<br />Design: Fourteen studies that are part of the Cohorts for Heart and Aging Research in Genomic Epidemiology consortium participated in the analysis. Data were provided for up to 50,345 participants. Using linear regression within studies and a fixed-effects meta-analysis across studies, we examined 1) the associations of processed meat and unprocessed red meat intake with fasting glucose and insulin concentrations; and 2) the interactions of processed meat and unprocessed red meat with genetic risk score related to fasting glucose or insulin resistance on fasting glucose and insulin concentrations.<br />Results: Processed meat was associated with higher fasting glucose, and unprocessed red meat was associated with both higher fasting glucose and fasting insulin concentrations after adjustment for potential confounders [not including body mass index (BMI)]. For every additional 50-g serving of processed meat per day, fasting glucose was 0.021 mmol/L (95% CI: 0.011, 0.030 mmol/L) higher. Every additional 100-g serving of unprocessed red meat per day was associated with a 0.037-mmol/L (95% CI: 0.023, 0.051-mmol/L) higher fasting glucose concentration and a 0.049-ln-pmol/L (95% CI: 0.035, 0.063-ln-pmol/L) higher fasting insulin concentration. After additional adjustment for BMI, observed associations were attenuated and no longer statistically significant. The association of processed meat and fasting insulin did not reach statistical significance after correction for multiple comparisons. Observed associations were not modified by genetic loci known to influence fasting glucose or insulin resistance.<br />Conclusion: The association of higher fasting glucose and insulin concentrations with meat consumption was not modified by an index of glucose- and insulin-related single-nucleotide polymorphisms. Six of the participating studies are registered at clinicaltrials.gov as NCT0000513 (Atherosclerosis Risk in Communities), NCT00149435 (Cardiovascular Health Study), NCT00005136 (Family Heart Study), NCT00005121 (Framingham Heart Study), NCT00083369 (Genetics of Lipid Lowering Drugs and Diet Network), and NCT00005487 (Multi-Ethnic Study of Atherosclerosis).<br /> (© 2015 American Society for Nutrition.)

Details

Language :
English
ISSN :
1938-3207
Volume :
102
Issue :
5
Database :
MEDLINE
Journal :
The American journal of clinical nutrition
Publication Type :
Academic Journal
Accession number :
26354543
Full Text :
https://doi.org/10.3945/ajcn.114.101238