Associations of serum carotenoid concentrations and fruit or vegetable consumption with serum insulin-like growth factor (IGF)-1 and IGF binding protein-3 concentrations in the Third National Health and Nutrition Examination Survey (NHANES III)
- PMID: 27313849
- PMCID: PMC4791518
- DOI: 10.1017/jns.2016.1
Associations of serum carotenoid concentrations and fruit or vegetable consumption with serum insulin-like growth factor (IGF)-1 and IGF binding protein-3 concentrations in the Third National Health and Nutrition Examination Survey (NHANES III)
Abstract
Dietary intervention may alter the insulin-like growth factor (IGF) system and thereby cancer risk. In a qualitative review, eleven of twenty studies showed a link between one or more carotenoids, vegetable or fruit intake and the IGF system, however, with partly contrary findings, such that no firm conclusion can be drawn. Therefore, we evaluated associations between serum carotenoid concentrations or the intake of fruits and vegetables with IGF-1, IGF binding protein (BP)-3 and their molar ratio (IGF-1:IGFBP-3) within the Third National Health and Nutrition Examination Survey (NHANES III, 1988-1994). In our analysis, we included 6061 NHANES III participants and used multivariable-adjusted linear regression models. IGF-1 concentrations were significantly positively associated with serum concentrations of lycopene, β-carotene, α-carotene, β-cryptoxanthin and lutein/zeaxanthin in men and women. Statistically significant positive associations were observed for serum concentrations of α-carotene and lutein/zeaxanthin and intake of fruits with serum IGFBP-3 concentrations in women, but not in men. The IGF-1:IGFBP-3 molar ratio was significantly positively associated with serum concentrations of lycopene, β-carotene and α-carotene in men and with β-carotene in women. In conclusion, dietary interventions with carotenoids, fruits and vegetables may affect the IGF system, although the direction of these effects is currently unclear.
Keywords: Carotenoids; IGF, insulin-like growth factor; IGFBP, insulin-like growth factor binding protein; Insulin-like growth factor binding protein-3; Insulin-like growth factor-1; NHANES III, Third National Health and Nutrition Examination Survey; Third National Health and Nutrition Examination Survey.
References
-
- Daughaday WH & Rotwein P (1989) Insulin-like growth factors I and II. Peptide, messenger ribonucleic acid and gene structures, serum, and tissue concentrations. Endocr Rev 10, 68–91. - PubMed
-
- Jones JI & Clemmons DR (1995) Insulin-like growth factors and their binding proteins biological actions. Endocr Rev 16, 3–34. - PubMed
-
- Clemmons DR (1991) Insulin-like growth factor binding proteins: roles in regulating IGF physiology. J Dev Physiol 15, 105–110. - PubMed
-
- Khandwala HM, McCutcheon IE, Flyvbjerg A, et al. (2000) The effects of insulin-like growth factors on tumorigenesis and neoplastic growth. Endocr Rev 21, 215–244. - PubMed
-
- Vrieling A (2007) The Insulin-like Growth Factor (IGF) System in Breast and Colorectal Carcinogenesis: Dietary Intervention and Molecular Studies. Utrecht: Ponsen & Looijen B.V.