Eckert-Lind, C. et al. Worldwide secular trends in age at pubertal onset assessed by breast development among girls: a systematic review and meta-analysis. JAMA Pediatr. 174, e195881 (2020).
Article PubMed PubMed Central Google Scholar
Ohlsson, C. et al. Secular trends in pubertal growth acceleration in Swedish boys born from 1947 to 1996. JAMA Pediatr. 173, 860–865 (2019).
Article PubMed PubMed Central Google Scholar
Zhang, Z., Hu, X., Yang, C. & Chen, X. Early age at menarche is associated with insulin resistance: a systemic review and meta-analysis. Postgrad. Med. 131, 144–150 (2019).
Cheng, T. S., Day, F. R., Lakshman, R. & Ong, K. K. Association of puberty timing with type 2 diabetes: a systematic review and meta-analysis. PLoS Med 17, e1003017 (2020).
Article PubMed PubMed Central Google Scholar
Ohlsson, C., Bygdell, M., Nethander, M. & Kindblom, J. M. Early puberty and risk for type 2 diabetes in men. Diabetologia 63, 1141–1150 (2020).
Article CAS PubMed PubMed Central Google Scholar
Bubach, S. et al. Early menarche and blood pressure in adulthood: systematic review and meta-analysis. J. Public Health 40, 476–484 (2018).
Day, F. R. et al. Genomic analyses identify hundreds of variants associated with age at menarche and support a role for puberty timing in cancer risk. Nat. Genet. 49, 834–841 (2017).
Article CAS PubMed PubMed Central Google Scholar
Al-Ajmi, K., Lophatananon, A., Ollier, W. & Muir, K. R. Risk of breast cancer in the UK biobank female cohort and its relationship to anthropometric and reproductive factors. PLOS One 13, e0201097 (2018).
Article PubMed PubMed Central Google Scholar
Savinainen, S. E., Viitasalo, A., Sallinen, T. M., Jääskeläinen, J. E. S. & Lakka, T. A. Child-related and parental predictors for thelarche in a general population of girls: the PANIC study. Pediatr. Res. 88, 676–680 (2020).
Zhou, J. et al. Maternal pre-pregnancy body mass index, gestational weight gain, and pubertal timing in daughters: a systematic review and meta-analysis of cohort studies. Obes. Rev. 23, e13418 (2022).
Harley, K. G. et al. Association of phthalates, parabens and phenols found in personal care products with pubertal timing in girls and boys. Hum. Reprod. 34, 109–117 (2019).
Article CAS PubMed Google Scholar
Wohlfahrt-Veje, C. et al. Pubarche and gonadarche onset and progression are differently associated with birth weight and infancy growth patterns. J. Endocr. Soc. 5, bvab108 (2021).
Article PubMed PubMed Central Google Scholar
Karaolis-Danckert, N., Buyken, A. E., Sonntag, A. & Kroke, A. Birth and early life influences on the timing of puberty onset: results from the DONALD (DOrtmund Nutritional and Anthropometric Longitudinally Designed) Study. Am. J. Clin. Nutr. 90, 1559–1565 (2009).
Article CAS PubMed Google Scholar
Choe, Y. et al. Rapid weight gain in early life is associated with central precocious puberty in girls, not in boys - a nationwide population-based study in Korea. Front. Endocrinol. 14, 1210995 (2023).
Liu, G. et al. Obesity is a risk factor for central precocious puberty: a case-control study. BMC Pediatr. 21, 509 (2021).
Article CAS PubMed PubMed Central Google Scholar
Reinehr, T. & Roth, C. L. Is there a causal relationship between obesity and puberty? Lancet Child Adolesc. Health 3, 44–54 (2019).
Lee, J. M. et al. Body mass index and timing of pubertal initiation in boys. Arch. Pediatr. Adolesc. Med. 164, 139–144 (2010).
Article PubMed PubMed Central Google Scholar
Wang, Y. Is obesity associated with early sexual maturation? A comparison of the association in American boys versus girls. Pediatrics 110, 903–910 (2002).
Karpati, A. M., Rubin, C. H., Kieszak, S. M., Marcus, M. & Troiano, R. P. Stature and pubertal stage assessment in American boys: the 1988-1994 Third National Health and Nutrition Examination Survey. J. Adolesc. Health 30, 205–212 (2002).
Juul, A., Magnusdottir, S., Scheike, T., Prytz, S. & Skakkebaek, N. E. Age at voice break in Danish boys: effects of pre-pubertal body mass index and secular trend. Int. J. Androl. 30, 537–542 (2007).
Buyken, A. E., Karaolis-Danckert, N. & Remer, T. Association of prepubertal body composition in healthy girls and boys with the timing of early and late pubertal markers. Am. J. Clin. Nutr. 89, 221–230 (2009).
Article CAS PubMed Google Scholar
Sandhu, J., Ben-Shlomo, Y., Cole, T. J., Holly, J. & Davey Smith, G. The impact of childhood body mass index on timing of puberty, adult stature and obesity: a follow-up study based on adolescent anthropometry recorded at Christ’s Hospital (1936-1964). Int. J. Obes. 30, 14–22 (2006).
He, Q. & Karlberg, J. Bmi in childhood and its association with height gain, timing of puberty, and final height. Pediatr. Res. 49, 244–251 (2001).
Article CAS PubMed Google Scholar
Brix, N. et al. Childhood overweight and obesity and timing of puberty in boys and girls: cohort and sibling-matched analyses. Int. J. Epidemiol. 49, 834–844 (2020).
Article PubMed PubMed Central Google Scholar
Chen, Y. et al. Association of prenatal and childhood environment smoking exposure with puberty timing: a systematic review and meta-analysis. Environ. Health Prev. Med. 23, 33 (2018).
Article PubMed PubMed Central Google Scholar
Brix, N. et al. Maternal smoking during pregnancy and timing of puberty in sons and daughters: a population-based cohort study. Am. J. Epidemiol. 188, 47–56 (2019).
Parent, A.-S. et al. The timing of normal puberty and the age limits of sexual precocity: variations around the world, secular trends, and changes after migration. Endocr. Rev. 24, 668–693 (2003).
Brix, N. et al. Timing of puberty in boys and girls: a population‐based study. Paediatr. Perinat. Epidemiol. 33, 70–78 (2019).
Rasmussen, A. R. et al. Validity of self-assessment of pubertal maturation. Pediatrics 135, 86–93 (2015).
Barker, D. J. Fetal origins of coronary heart disease. BMJ 311, 171–174 (1995).
Article CAS PubMed PubMed Central Google Scholar
Barker, D. J. et al. Fetal nutrition and cardiovascular disease in adult life. Lancet 341, 938–941 (1993).
Article CAS PubMed Google Scholar
Barker, D. J., Winter, P. D., Osmond, C., Margetts, B. & Simmonds, S. J. Weight in infancy and death from ischaemic heart disease. Lancet 2, 577–580 (1989).
Article CAS PubMed Google Scholar
Hales, C. N. & Barker, D. J. Type 2 (non-insulin-dependent) diabetes mellitus: the thrifty phenotype hypothesis. Diabetologia 35, 595–601 (1992).
Article CAS PubMed Google Scholar
Pereira, P. P. et al. Maternal active smoking during pregnancy and low birth weight in the Americas: a systematic review and meta-analysis. Nicotine Tob. Res 19, 497–505 (2017).
Di, H.-K. et al. Maternal smoking status during pregnancy and low birth weight in offspring: systematic review and meta-analysis of 55 cohort studies published from 1986 to 2020. World J. Pediatr. 18, 176–185 (2022).
Article CAS PubMed Google Scholar
Suutela, M. et al. Timing of puberty and school performance: a population-based study. Front. Endocrinol. 13, 936005 (2022).
Sankilampi, U., Hannila, M.-L., Saari, A., Gissler, M. & Dunkel, L. New population-based references for birth weight, length, and head circumference in singletons and twins from 23 to 43 gestation weeks. Ann. Med. 45, 446–454 (2013).
Aksglaede, L., Sørensen, K., Petersen, J. H., Skakkebaek, N. E. & Juul, A. Recent decline in age at breast development: the Copenhagen Puberty Study. Pediatrics 123, e932–e939 (2009).
Mogensen, S. S. et al. Diagnostic work-up of 449 consecutive girls who were referred to be evaluated for precocious puberty. J. Clin. Endocrinol. Metab. 96, 1393–1401 (2011).
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