Page 140 - Read Online
P. 140
Melnik et al. J Transl Genet Genom 2022;6:1-45 https://dx.doi.org/10.20517/jtgg.2021.37 Page 43
PMC
573. Voerman E, Gaillard R, Geurtsen ML, Jaddoe VWV. Maternal first-trimester cow-milk intake is positively associated with childhood
general and abdominal visceral fat mass and lean mass but not with other cardiometabolic risk factors at the age of 10 Years. J Nutr
2021;151:1965-75. DOI PubMed PMC
574. Roland MC, Friis CM, Voldner N, et al. Fetal growth versus birthweight: the role of placenta versus other determinants. PLoS One
2012;7:e39324. DOI PubMed PMC
575. Tibblin G, Eriksson M, Cnattingius S, Ekbom A. High birthweight as a predictor of prostate cancer risk. Epidemiology 1995;6:423-4.
DOI PubMed
576. Eriksson M, Wedel H, Wallander MA, et al. The impact of birth weight on prostate cancer incidence and mortality in a population-
based study of men born in 1913 and followed up from 50 to 85 years of age. Prostate 2007;67:1247-54. DOI PubMed
577. Zhou CK, Sutcliffe S, Welsh J, et al. Is birthweight associated with total and aggressive/lethal prostate cancer risks? Br J Cancer
2016;114:839-48. DOI PubMed PMC
578. Cnattingius S, Lundberg F, Sandin S, Grönberg H, Iliadou A. Birth characteristics and risk of prostate cancer: the contribution of
genetic factors. Cancer Epidemiol Biomarkers Prev 2009;18:2422-6. DOI PubMed
579. Lahmann PH, Wallström P, Lissner L, Olsson H, Gullberg B. Measures of birth size in relation to risk of prostate cancer: the Malmö
Diet and Cancer Study, Sweden. J Dev Orig Health Dis 2012;3:442-9. DOI PubMed
580. Heppe DH, van Dam RM, Willemsen SP, et al. Maternal milk consumption, fetal growth, and the risks of neonatal complications: the
Generation R Study. Am J Clin Nutr 2011;94:501-9. DOI PubMed
581. Olsen SF, Halldorsson TI, Willett WC, et al; NUTRIX Consortium. Milk consumption during pregnancy is associated with increased
infant size at birth: prospective cohort study. Am J Clin Nutr 2007;86:1104-10. DOI PubMed
582. Brantsæter AL, Olafsdottir AS, Forsum E, Olsen SF, Thorsdottir I. Does milk and dairy consumption during pregnancy influence
fetal growth and infant birthweight? Food Nutr Res 2012;56:20050. DOI PubMed PMC
583. Melnik BC, John SM, Schmitz G. Milk consumption during pregnancy increases birth weight, a risk factor for the development of
diseases of civilization. J Transl Med 2015;13:13. DOI PubMed PMC
584. Achón M, Úbeda N, García-González Á, Partearroyo T, Varela-Moreiras G. Effects of milk and dairy product consumption on
pregnancy and lactation outcomes: a systematic review. Adv Nutr 2019;10:S74-87. DOI PubMed PMC
585. Jiang H, Wu W, Zhang M, et al. Aberrant upregulation of miR-21 in placental tissues of macrosomia. J Perinatol 2014;34:658-63.
DOI PubMed
586. Zhang JT, Cai QY, Ji SS, et al. Decreased miR-143 and increased miR-21 placental expression levels are associated with
macrosomia. Mol Med Rep 2016;13:3273-80. DOI PubMed
587. Wen HY, Abbasi S, Kellems RE, Xia Y. mTOR: a placental growth signaling sensor. Placenta 2005;26 Suppl A:S63-9. DOI
PubMed
588. Roos S, Lagerlöf O, Wennergren M, Powell TL, Jansson T. Regulation of amino acid transporters by glucose and growth factors in
cultured primary human trophoblast cells is mediated by mTOR signaling. Am J Physiol Cell Physiol 2009;297:C723-31. DOI
PubMed
589. Jansson T, Aye IL, Goberdhan DC. The emerging role of mTORC1 signaling in placental nutrient-sensing. Placenta 2012;33 Suppl
2:e23-9. DOI PubMed PMC
590. Rosario FJ, Kanai Y, Powell TL, Jansson T. Mammalian target of rapamycin signalling modulates amino acid uptake by regulating
transporter cell surface abundance in primary human trophoblast cells. J Physiol 2013;591:609-25. DOI PubMed PMC
591. Xu J, Lu C, Wang J, Zhang R, Qian X, Zhu H. Regulation of human trophoblast GLUT3 glucose transporter by mammalian target of
rapamycin signaling. Int J Mol Sci 2015;16:13815-28. DOI PubMed PMC
592. Rosario FJ, Powell TL, Gupta MB, Cox L, Jansson T. mTORC1 transcriptional regulation of ribosome subunits, protein synthesis,
and molecular transport in primary human trophoblast cells. Front Cell Dev Biol 2020;8:583801. DOI PubMed PMC
593. Cook MB, Gamborg M, Aarestrup J, Sørensen TI, Baker JL. Childhood height and birth weight in relation to future prostate cancer
risk: a cohort study based on the copenhagen school health records register. Cancer Epidemiol Biomarkers Prev 2013;22:2232-40.
DOI PubMed PMC
594. Aarestrup J, Gamborg M, Cook MB, Baker JL. Childhood height increases the risk of prostate cancer mortality. Eur J Cancer
2015;51:1340-5. DOI PubMed PMC
595. Aarestrup J, Bjerregaard LG, Meyle KD, et al. Birthweight, childhood overweight, height and growth and adult cancer risks: a review
of studies using the Copenhagen School Health Records Register. Int J Obes (Lond) 2020;44:1546-60. DOI PubMed
596. Bjerregaard LG, Aarestrup J, Gamborg M, Lange T, Tjønneland A, Baker JL. Childhood height, adult height, and the risk of prostate
cancer. Cancer Causes Control 2016;27:561-7. DOI PubMed PMC
597. Alimujiang A, Colditz GA, Gardner JD, Park Y, Berkey CS, Sutcliffe S. Childhood diet and growth in boys in relation to timing of
puberty and adult height: the Longitudinal Studies of Child Health and Development. Cancer Causes Control 2018;29:915-26. DOI
PubMed PMC
598. Wiley AS. Consumption of milk, but not other dairy products, is associated with height among US preschool children in NHANES
1999-2002. Ann Hum Biol 2009;36:125-38. DOI PubMed
599. Wiley AS. Does milk make children grow? Am J Hum Biol 2005;17:425-41. DOI PubMed
600. Almon R, Nilsson TK, Sjöström M, Engfeldt P. Lactase persistence and milk consumption are associated with body height in
Swedish preadolescents and adolescents. Food Nutr Res 2011;55:7253. DOI PubMed PMC
601. Melnik BC. Evidence for acne-promoting effects of milk and other insulinotropic dairy products. Nestle Nutr Workshop Ser Pediatr