Relationship between thin physique at 6 years and metabolic disease risks in middle-aged Japanese women: The Suita study.
metabolic disease risk
physique
six years old
women
Journal
The journal of obstetrics and gynaecology research
ISSN: 1447-0756
Titre abrégé: J Obstet Gynaecol Res
Pays: Australia
ID NLM: 9612761
Informations de publication
Date de publication:
Mar 2020
Mar 2020
Historique:
received:
08
07
2019
accepted:
31
12
2019
pubmed:
22
1
2020
medline:
15
12
2020
entrez:
22
1
2020
Statut:
ppublish
Résumé
We previously reported that female babies born small developed cardiovascular risks in middle age. The present study was conducted using the same cohort to examine the relationship between physique at 6 years and the metabolic disease risk in middle age. Data collected from 721 women aged 41-69 years who underwent a medical examination at a single institution between 2007 and 2008 were retrospectively examined. We collected data from medical examinations and a questionnaire on physique (thin, normal, and fat) at 6 years. The relationship between birthweight and physique at 6 years was investigated. Among females who were born small (< 2500 g), 80%, 16%, and 4% became thin, normal, or fat, respectively, by 6 years. Physique at 6 years had a negative relationship with future triglyceride, fasting glucose, HbA Although our findings may be specific to the study population, physique at 6 years had a negative relationship with the metabolic disease risk in middle-aged Japanese women. Insulin and MOMA-IR levels negatively correlated with physique at 6 years, and development from low birthweight infants to childhood obesity was rare in this cohort.
Substances chimiques
Insulin
0
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
517-526Informations de copyright
© 2020 Japan Society of Obstetrics and Gynecology.
Références
Fall CH, Osmond C, Barker DJ et al. Fetal and infant growth and cardiovascular risk factors in women. BMJ 1995; 310: 428-432.
Barker DJP. Developmental origins of adult health and disease. J Epidemiol Commun Health 2004; 58: 114-115.
Salonen MK, Kajantie E, Osmond C et al. Role of socioeconomic indicators on development of obesity from a life course perspective. J Environ Public Health 2009; 2009: 625168.
Newton S, Braithwaite D, Akinyemiju TF. Socio-economic status over the life course and obesity: Systematic review and meta-analysis. PLoS One 2017; 12: e0177151.
Salonen MK, Kajantie E, Osmond C et al. Role of childhood growth on the risk of metabolic syndrome in obese men and women. Diabetes Metab 2009; 35: 94-100.
Kuh D, Hardy R, Chaturvedi N, Wadsworth ME. Birth weight, childhood growth and abdominal obesity in adult life. Int J Obes Relat Metab Disord 2002; 26: 40-47.
Ravelli AC, van Der Meulen JH, Osmond C, Barker DJ, Bleker OP. Obesity at the age of 50 y in men and women exposed to famine prenatally. Am J Clin Nutr 1999; 70: 811-816.
Katsuragi S, Okamura T, Kokubo Y, Ikeda T, Miyamoto Y. Birthweight and cardiovascular risk factors in a Japanese general population. J Obstet Gynecol Res 2017; 43: 1001-1007.
Sandboge S, Moltchanova E, Blomstedt PA et al. Birth-weight and resting metabolic rate in adulthood - sex-specific differences. Ann Med 2012; 44: 296-303.
Kokubo Y, Kamide K, Okamura T et al. Impact of high-normal blood pressure on the risk of cardiovascular disease in a Japanese urban cohort: The Suita study. Hypertension 2008; 52: 652-659.
Okamura T, Kokubo Y, Watanabe M et al. Low-density lipoprotein cholesterol and non-high-density lipoprotein cholesterol and the incidence of cardiovascular disease in an urban Japanese cohort study: The Suita study. Atherosclerosis 2009; 203: 587-592.
Friedewald WT, Levy RI, Fredrickson DS. Estimation of the concentration of low-density lipoprotein cholesterol in plasma without use of the preparative ultracentrifuge. Clin Chem 1972; 18: 499-502.
Teramoto T, Sasaki J, Ishibashi S et al. Diagnosis of atherosclerosis, executive summary of the Japan atherosclerosis society (JAS) guidelines for the diagnosis and prevention of atherosclerotic cardiovascular diseases in Japan-2012 version. J Atheroscler Thromb 2014; 21: 296-298.
Expert Panel on Detection, Evaluation, and Treatment of High Blood Cholesterol in Adults. Executive summary of the third report of the National Cholesterol Education Program (NCEP) Expert Panel on Detection, Evaluation, and Treatment of High Blood Cholesterol in Adults (Adult Treatment Panel III). JAMA 2001; 285: 2486-2497.
Kashiwagi A, Kasuga M, Araki E et al. International clinical harmonization of glycated hemoglobin in Japan: From Japan Diabetes Society to National Glycohemoglobin Standardization Program values. Diabetol Int 2012; 3: 39-40.
The Ministry of Health, Labour and Welfare, Tokyo. [Cited 1 Sept 2019]. Available from URL: https://www.mhlw.go.jp/toukei_hakusho/index.html
The Ministry of Health, Labour and Welfare, Tokyo. [Cited 2 Jul 2019]. Available from URL: http://www.mhlw.go.jp/bunya/kenkou/eiyou08/01.html
Kim SK, Hong SH, Chung JH, Cho KB. Association between alcohol consumption and metabolic syndrome in a community-based cohort of Korean adults. Med Sci Monit 2017; 23: 2104-2110.
Tanaka Y, Kikuchi T, Nagasaki K, Hiura M, Ogawa Y, Uchiyama M. Lower birth weight and visceral fat accumulation are related to hyperinsulinemia and insulin resistance in obese Japanese children. Hypertens Res 2005; 28: 529-536.
Nishina M, Kikuchi T, Yamazaki H, Kameda K, Hiura M, Uchiyama M. Relationship among systolic blood pressure, serum insulin and leptin, and visceral fat accumulation in obese children. Hypertens Res 2003; 26: 281-288.
Hashimoto N, Kawasaki T, Kikuchi T, Takahashi H, Uchiyama M. The relationship between the intrauterine environment and the blood pressure in 3-year-old Japanese children. Acta Paediatr 1996; 85: 132-138.
Eriksson JG, Forsén T, Tuomilehto J, Osmond C, Barker DJ. Early growth and coronary heart disease in later life. BMJ 2001; 322: 949-953.
Vickers HM. Early life nutrition, epigenetics and programming of later life disease. Nutrients 2014; 6: 2165-2178.
Desai M, Jellyman JK, Ross MG. Ross, epigenomics, gestational programming and risk of metabolic syndrome. Int J Obes 2015; 39: 633-641.
Tang WY, Ho SM. Epigenetic reprogramming and imprinting in origins of disease. Rev Endocr Metab Disord 2007; 8: 173-182.
Waterland RA, Michels KB. Epigenetic epidemiology of the developmental origins hypothesis. Annu Rev Nutr 2007; 27: 363-388.
Barker DJ, Meade TW, Fall CH et al. Relation of fetal and infant growth to plasma fibrinogen and factor VII concentrations in adult life. BMJ 1992; 304: 148-152.
Gebhardt R. Metabolic zonation of the liver: Regulation and implications for liver function. Pharmacol Ther 1992; 53: 275-354.
Desai M, Crowther NJ, Ozanne SE, Lucas A, Hales CN. Adult glucose and lipid metabolism may be programmed during fetal life. Biochem Soc Trans 1995; 23: 331-335.
Kind KL, Clifton PM, Katsman AI, Tsiounis M, Robinson JS, Owens JA. Restricted fetal growth and the response to dietary cholesterol in the Guinea pig. Am J Phys 1999; 27: 1675-1685.
Barker DJ, Martyn CN, Osmond C, Hales CN, Fall CH. Growth in utero and serum cholesterol concentrations in adult life. BMJ 1993; 307: 1524-1527.
Mattyn CN, Maede TW, Stirling Y, Barker DJ. Plasma concentrations of fibrinogen and factor VII in adult life and their reaction to intra-uterine growth. Br J Haematol 1995; 89: 142-146.
Barker DJ, Martyn CN, Osmond C, Wield GA. Abnormal liver growth in utero and death from coronary heart disease. BMJ 1995; 310: 703-704.
Morris KV. siRNA-mediated transcriptional gene silencing: The potential mechanism and a possible role in the histone code. Cell Mol Life Sci 2005; 62: 3057-3066.
Cheung P, Lau P. Epigenetic regulation by histone methylation and histone variants. Mol Endocrinol 2005; 19: 563-573.
Esteller M. Aberrant DNA methylation as a cancer-inducing mechanism. Annu Rev Pharmacol Toxicol 2005; 45: 629-656.
Hoffman DJ, Reynolds RM, Hardy DB. Developmental origins of health and disease: Current knowledge and potential mechanisms. Nutr Rev 2017; 75: 951-970.
Barker DJ, Gluckman PD, Godfrey KM, Harding JE, Owens JA, Robinson JS. Fetal nutrition and cardiovascular disease in adult life. Lancet 1993; 341: 938-941.
Engin A. The definition and prevalence of obesity and metabolic syndrome. Adv Exp Med Biol 2017; 960: 1-17.
Kwok MK, Leung GM, Schooling CM. Associations of birth order with early adolescent growth, pubertal onset, blood pressure and size: Evidence from Hong Kong's "children of 1997" birth cohort. PLoS One 2016; 11: e0153787.
Fall CHD, Kumaran K. Metabolic programming in early life in humans. Philos Trans R Soc Lond Ser B Biol Sci 2019 Apr 15; 374: 20180123.
Pistilli M, Howard VJ, Safford MM et al. Association of secondhand tobacco smoke exposure during childhood on adult cardiovascular disease risk among never-smokers. Ann Epidemiol 2019; 32: 28-34.e1.