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Milk consumption and circulating insulin-like growth factor-I level: a systematic literature review

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Pages 330-340 | Published online: 21 Sep 2009

References

  • Budek AZ, Hoppe C, Michaelsen KF, Bügel S, Mølgaard C. Associations of total, dairy, and meat protein with markers for bone turnover in healthy, prepubertal boys. J Nutr 2007; 137: 930–934
  • Cadogan J, Eastell R, Jones N, Barker ME. Milk intake and bone mineral acquisition in adolescent girls: Randomised, controlled intervention trial. BMJ 1997; 315: 1255–1260
  • Colangelo LA, Chiu BC, Liu K, Kopp PA, Gann PH. IGF-1, IGFBP-3, and nutritional factors in young black and white men: The CARDIA Male Hormone Study. Nutr Cancer 2005; 53: 57–64
  • Collier RJ, Miller MA, Hildebrandt JR, Torkelson AR, White TC, Madsen KS, Vicini JL, Eppard PJ, Lanza GM. Factors affecting insulin-like growth factor-1 concentration in bovine milk. J Dairy Sci 1991; 74: 2905–2911
  • Crace CJ, Swenne I, Hill DJ, Milner RD. Tissue and serum insulin-like growth factor I (IGF-I) concentrations in rats subjected to temporary protein-energy malnutrition early in life. Ups J Med Sci 1991; 96: 17–22
  • DeLellis K, Rinaldi S, Kaaks RJ, Kolonel LN, Henderson B. Dietary and lifestyle correlates of plasma insulin-like growth factor-I (IGF-I) and IGF binding protein-3 (IGFBP-3): The multiethnic cohort. Cancer Epidemiol Biomarkers Prev 2004; 13: 1444–1451
  • DerSimonian R, Laird NP. Meta-analysis in clinical trials. Control Clin Trials 1986; 7: 177–188
  • Devi GR, Yang DH, Rosenfeld RG, Oh Y. Differential effects of insulin-like growth factor (IGF)-binding protein-3 and its proteolytic fragments on ligand binding, cell surface association, and IGF-I receptor signaling. Endocrinology 2000; 141: 4171–4179
  • Esterle L, Sabatier JP, Guillon-Metz F, Walrant-Debray O, Guaydier-Souquières G. Milk, rather than other foods, is associated with vertebral bone mass and circulating IGF-1 in female adolescents. Osteoporos Int 2009; 20: 567–575
  • Follmann D, Elliott P, Suh I, Cutler J. Variance imputation for overviews of clinical trials with continuous response. J Clin Epidemiol 1992; 45: 769–773
  • Giovannucci E, Pollak M, Liu Y, Platz EA, Majeed N. Nutritional predictors of insulin-like growth factor I and their relationships to cancer in men. Cancer Epidemiol Biomarkers Prev 2003; 12: 84–89
  • Goodman-Gruen D, Barrett-Connor E. Epidemiology of insulin-like growth factor-I in elderly men and women. Am J Clin Epidemiol 1997; 145: 970–976
  • Gunnell D, Oliver SE, Peters TJ, Donovan JL, Persad R. Are diet-prostate cancer associations mediated by the IGF axis? A cross-sectional analysis of diet, IGF-I and IGFBP-3 in healthy middle-aged men. Br J Cancer 2003; 88: 1682–1686
  • Heaney RP, McCarron DA, Dawson-Hughes B, Oparil S, Berga SL, Stern JS, Barr SI, Rosen CJ. Dietary changes favorably affect bone remodeling in older adults. J Am Diet Assoc 1999; 99: 1228–1233
  • Holmes MD, Pollak MN, Willett WC, Hankinson SE. Dietary correlates of plasma insulin-like growth factor I and insulin-like growth factor binding protein 3 concentrations. Cancer Epidemiol Biomarkers Prev 2002; 11: 852–861
  • Honegger A, Humbel RE. Insulin-like growth factors I and II in fetal and adult bovine serum. J Biol Chem 1986; 261: 569–575
  • Hoppe C, Udam TR, Lauritzen L, Mølgaard C, Juul A, Michaelsen KF. Animal protein intake, serum insulin-like growth factor I, and growth in healthy 2.5-y-old Danish children. Am J Clin Nutr 2004a; 80: 447–452
  • Hoppe C, Mølgaard C, Juul A, Michaelsen KF. High intakes of skimmed milk, but not meat, increase serum IGF-I and IGFBP-3 in eight-year-old boys. Eur J Clin Nutr 2004b; 58: 1211–1216
  • Hoppe C, Mølgaard C, Vaag A, Barkholt V, Michaelsen KF. High intakes of milk, but not meat, increase s-insulin and insulin resistance in 8-year-old boys. Eur J Clin Nutr 2005; 59: 393–398
  • International Dairy Federation. 2008. The World Dairy Situation. Bulletin of the IDF 432/2008. Available online at: http://www.fil-idf.org/content/Default.asp?PageID=453.
  • Jones JI, Clemmons DR. Insulin-like growth factors and their binding proteins: Biological actions. Endocr Rev 1995; 16: 3–34
  • Juskevich JC, Guyer CG. Bovine growth hormone: Human food safety evaluation. Science 1990; 249: 875–884
  • Kang SH, Kim JU, Imm JY, Oh S, Kim SH. The effects of dairy processes and storage growth factor-I (IGF-I) content in milk and in IGF-I-fortified dairy products J. Dairy Sci 2006; 89: 402–409
  • Kurahashi N, Inoue M, Iwasaki M, Sasazuki S, Tsugane AS. Dairy product, saturated fatty acid, and calcium intake and prostate cancer in a prospective cohort of Japanese men. Cancer Epidemiol Biomarkers Prev 2008; 17: 930–937
  • Larnkjær A, Hoppe C, Mølgaard C, Michaelsen KF. The effects of whole milk and infant formula on growth and IGF-I in late infancy. Eur J Clin Nutr 2009; 63: 956–963
  • Larsson SC, Wolk K, Brismar K, Wolk A. Association of diet with serum insulin-like growth factor I in middle-aged and elderly men. Am J Clin Nutr 2005; 81: 1163–1167
  • Ma J, Giovannucci E, Pollak M, Chan JM, Gaziano JM, Willett W, Stampfer MJ. Milk intake, circulating levels of insulin-like growth factor-I, and risk of colorectal cancer in men. J Natl Cancer Inst 2001; 93: 1330–1336
  • Manios Y, Moschonis G, Trovas G, Lyritis GP. Changes in biochemical indexes of bone metabolism and bone mineral density after a 12-mo dietary intervention program: The Postmenopausal Health Study. Am J Clin Nutr 2007; 86: 781–789
  • McGreevy KM, Hoel BD, Lipsitz SR, Hoel DG. Impact of nutrients on insulin-like growth factor-I, insulin-like growth factor binding protein-3 and their ratio in African American and white males. Public Health Nutr 2007; 10: 97–105
  • Melnik BC. Milk—The promoter of chronic western diseases. Med Hypoth 2009a; 72: 631–639
  • Melnik, BC. 2009b. Permanent impairment of insulin resistance from pregnancy to adulthood: The primary basic risk factor of chronic western diseases. Med Hypoth, in press.
  • Moorman PG, Terry PD. Consumption of dairy products and risk of breast cancer: A review of the literature. Am J Clin Nutr 2004; 80: 5–14
  • Morimoto LM, Newcomb PA, White E, Bigler J, Potter JD. Variation in plasma insulin-like growth factor-1 and insulin-like growth factor binding protein-3: pPrsonal and lifestyle factors (United States). Cancer Causes Control 2005; 16: 917–927
  • Mucci LA, Tamimi R, Lagiou P, Trichopoulou A, Benetou V, Spanos E, Trichopoulos D. Are dietary influences on the risk of prostate cancer mediated through the insulin-like growth factor system. BJU Int 2001; 87: 814–820
  • Norat T, Dossus L, Rinaldi S, Overvad K, Grønbaek H, Tjønneland A, Olsen A, Clavel-Chapelon F, Boutron-Ruault MC, Boeing H, et al. Diet, serum insulin-like growth factor-I and IGF-binding protein-3 in European women. Eur J Clin Nutr 2007; 61: 91–98
  • Philipps AF, Dvorák B, Kling PJ, Grille JG, Koldovský O. Absorption of milk-borne insulin-like growth factor-I into portal blood of suckling rats. J Pediatr Gastroenterol Nutr 2000; 31: 128–135
  • Philipps AF, Kling PJ, Grille JG, Dvorák B. Intestinal transport of insulin-like growth factor-I (IGF-I) in the suckling rat. J Pediatr Gastroenterol Nutr 2002; 35: 539–544
  • Qin LQ, Xu JY, Wang PY, Kaneko T, Hoshi K, Hoshi K, Sato A. Milk consumption is a risk factor for prostate cancer: Meta-analysis of case–control studies. Nutr Cancer 2004a; 48: 22–27
  • Qin LQ, Xu JY, Wang PY, Ganmaa D, Li J, Wang J, Kaneko T, Hoshi K, Shirai T, Sato A. Low-fat milk promotes the development of 7,12-dimethylbenz(a) anthracene (DMBA)-induced mammary tumors in rats. Int J Cancer 2004b; 110: 491–496
  • Qin LQ, Xu JY, Wang PY, Tong J, Hoshi K. Milk consumption is a risk factor for prostate cancer? Evidence from cohort studies. Asia Pac J Clin Nutr 2007; 16: 467–476
  • Qin LQ, Xu JY, Tezuka H, Wang PY, Hoshi K. Milk inhibits the regression of 7,12-dimethylbenz(a) anthracene-induced mammary tumors in ovariectomized rats. Nutr Cancer 2008; 60: 505–510
  • Rajaram S, Baylink DJ, Mohan S. Insulin-like growth factor-binding proteins in serum and other biological fluids: Regulation and functions. Endocr Rev 1997; 18: 801–831
  • Rich-Edwards JW, Ganmaa D, Pollak MN, Nakamoto EK, Kleinman K, Tserendolgor U, Willett WC, Frazier AL. Milk consumption and the prepubertal somatotropic axis. Nutr J 2007; 6: 28–35
  • Rogers I, Emmett P, Gunnell D, Dunger D, Holly J. Milk as a food for growth? The insulin-like growth factors link. Public Health Nutr 2006; 9: 359–368
  • Rosen CJ. Insulin-like growth factor I and calcium balance: Evolving concepts of an evolutionary process. Endocrinology 2003; 144: 4679–4681
  • Rowlands MA, Gunnell D, Harris R, Vatten LJ, Holly JM, Martin RM. Circulating insulin-like growth factor peptides and prostate cancer risk: a systematic review and meta-analysis. Int J Cancer 2009; 124: 2416–2429
  • Sugumar A, Liu YC, Xia Q, Koh YS, Matsuo K. Insulin-like growth factor (IGF)-I and IGF-binding protein 3 and the risk of premenopausal breast cancer: A meta-analysis of literature. Int J Cancer 2004; 111: 293–297
  • Takenaka A, Oki N, Takahashi SI, Noguchi T. Dietary restriction of single essential amino acids reduces plasma insulin-like growth factor-I (IGF-I) but does not affect plasma IGF-binding protein-1 in rats. J Nutr 2000; 130: 2910–2914
  • Toniolo P, Riboli E, Protta F, Charrel M, Cappa APM. Calorie-providing nutrients and risk of breast cancer. J Natl Cancer Inst 1989; 81: 278–286
  • Werner H, Bruchim I. The insulin-like growth factor-I receptor as an oncogene. Arch Physiol Biochem 2009; 115: 58–71
  • Zamboni G, Dufillot D, Antoniazzi F, Valentini R, Gendrel D, Tato L. Growth hormone-binding proteins and insulin-like growth factor-binding proteins in protein-energy malnutrition, before and after nutritional rehabilitation. Pediatr Res 1996; 39: 410–414
  • Zhu K, Du X, Cowell CT, Greenfield H, Blades B, Dobbins TA, Zhang Q, Fraser DR. Effects of school milk intervention on cortical bone accretion and indicators relevant to bone metabolism in Chinese girls aged 10–12 y in Beijing. Am J Clin Nutr 2005; 81: 1168–1175

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