Syddansk Universitet DNA Methylation Changes in the IGF 1 R Gene in Birth Weight Discordant Adult Monozygotic
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P. Tsai | T. Spector | J. Bell | L. Christiansen | G. Willemsen | D. Boomsma | J. Dongen | A. Valdes | Q. Tan | D. Boomsma
[1] Jordana T Bell,et al. Power and sample size estimation for epigenome-wide association scans to detect differential DNA methylation , 2015, International journal of epidemiology.
[2] Maria-Luisa Lazo-de-la-Vega-Monroy,et al. Placental IGF1R-PI3K/Akt pathway and its relationship to idiopathic birth weight alterations , 2015 .
[3] M. Uddin,et al. Racial differences in IGF1 methylation and birth weight , 2015, Clinical Epigenetics.
[4] Tom R. Gaunt,et al. Longitudinal analysis of DNA methylation associated with birth weight and gestational age , 2015, Human molecular genetics.
[5] M. Nykter,et al. Ageing-associated changes in the human DNA methylome: genomic locations and effects on gene expression , 2015, BMC Genomics.
[6] L. Christiansen,et al. Epigenetic signature of birth weight discordance in adult twins , 2014, BMC Genomics.
[7] R. Saffery,et al. Epigenome-wide analysis of neonatal CD4+ T-cell DNA methylation sites potentially affected by maternal fish oil supplementation , 2014, Epigenetics.
[8] Nilesh J Samani,et al. Cigarette smoking reduces DNA methylation levels at multiple genomic loci but the effect is partially reversible upon cessation , 2014, Epigenetics.
[9] M. Szyf,et al. Genome-wide DNA methylation variability in adolescent monozygotic twins followed since birth , 2014, Epigenetics.
[10] Alan Brennan,et al. Potential benefits of minimum unit pricing for alcohol versus a ban on below cost selling in England 2014: modelling study , 2014, BMJ : British Medical Journal.
[11] Rafael A. Irizarry,et al. Minfi: a flexible and comprehensive Bioconductor package for the analysis of Infinium DNA methylation microarrays , 2014, Bioinform..
[12] D. Gaudet,et al. Epigenetic dysregulation of the IGF system in placenta of newborns exposed to maternal impaired glucose tolerance. , 2014, Epigenomics.
[13] D. Boomsma,et al. Epigenetic Variation in Monozygotic Twins: A Genome-Wide Analysis of DNA Methylation in Buccal Cells , 2014, Genes.
[14] A. Teschendorff,et al. Genome-wide age-related changes in DNA methylation and gene expression in human PBMCs , 2014, AGE.
[15] Yongtao Guan,et al. Maternal nutrition at conception modulates DNA methylation of human metastable epialleles , 2014, Nature Communications.
[16] K. Hansen,et al. Functional normalization of 450k methylation array data improves replication in large cancer studies , 2014, Genome Biology.
[17] K. Nicolaides,et al. Paternally Expressed, Imprinted Insulin-Like Growth Factor-2 in Chorionic Villi Correlates Significantly with Birth Weight , 2013, PloS one.
[18] S. Horvath. DNA methylation age of human tissues and cell types , 2013, Genome Biology.
[19] M. Zeegers,et al. Adult monozygotic twins discordant for intra-uterine growth have indistinguishable genome-wide DNA methylation profiles , 2013, Genome Biology.
[20] L. Gordon,et al. Longitudinal, genome-scale analysis of DNA methylation in twins from birth to 18 months of age reveals rapid epigenetic change in early life and pair-specific effects of discordance , 2013, Genome Biology.
[21] Alireza Moayyeri,et al. COHORT PROFILE Cohort Profile : TwinsUK and Healthy Ageing Twin Study , 2013 .
[22] H. M. Draisma,et al. The Adult Netherlands Twin Register: Twenty-Five Years of Survey and Biological Data Collection , 2013, Twin Research and Human Genetics.
[23] J. Galati,et al. The Peri/Postnatal Epigenetic Twins Study (PETS) , 2012, Twin Research and Human Genetics.
[24] Francesco Marabita,et al. A beta-mixture quantile normalization method for correcting probe design bias in Illumina Infinium 450 k DNA methylation data , 2012, Bioinform..
[25] Olli Simell,et al. New loci associated with birth weight identify genetic links between intrauterine growth and adult height and metabolism , 2012, Nature Genetics.
[26] J. Holst,et al. Adult glucose metabolism in extremely birthweight-discordant monozygotic twins , 2012, Diabetologia.
[27] P. Visscher,et al. Neonatal DNA methylation profile in human twins is specified by a complex interplay between intrauterine environmental and genetic factors, subject to tissue-specific influence , 2012, Genome research.
[28] A. Hofman,et al. Heritability Estimates of Body Size in Fetal Life and Early Childhood , 2012, PloS one.
[29] C. Mulligan,et al. Methylation changes at NR3C1 in newborns associate with maternal prenatal stress exposure and newborn birth weight , 2012, Epigenetics.
[30] A. Oshlack,et al. SWAN: Subset-quantile Within Array Normalization for Illumina Infinium HumanMethylation450 BeadChips , 2012, Genome Biology.
[31] A. Hattersley,et al. IGF2/H19 hypomethylation in a patient with very low birthweight, preocious pubarche and insulin resistance , 2012, BMC Medical Genetics.
[32] Devin C. Koestler,et al. DNA methylation arrays as surrogate measures of cell mixture distribution , 2012, BMC Bioinformatics.
[33] F. Tylavsky,et al. Newborn Umbilical Cord Blood DNA Methylation and Gene Expression Levels Exhibit Limited Association with Birth Weight , 2012, Chemistry & biodiversity.
[34] Robin M. Murray,et al. Epigenome-Wide Scans Identify Differentially Methylated Regions for Age and Age-Related Phenotypes in a Healthy Ageing Population , 2012, PLoS genetics.
[35] S. Murphy,et al. Association of cord blood methylation fractions at imprinted insulin-like growth factor 2 (IGF2), plasma IGF2, and birth weight , 2012, Cancer Causes & Control.
[36] G. Echevarría,et al. The effect of birthweight on childhood cognitive development in a middle-income country. , 2011, International journal of epidemiology.
[37] Devin C Koestler,et al. Infant growth restriction is associated with distinct patterns of DNA methylation in human placentas , 2011, Epigenetics.
[38] C. Marsit,et al. Birthweight is associated with DNA promoter methylation of the glucocorticoid receptor in human placenta , 2011, Epigenetics.
[39] J. Carlin,et al. Expression discordance of monozygotic twins at birth: Effect of intrauterine environment and a possible mechanism for fetal programming , 2011, Epigenetics.
[40] D. Spandidos,et al. Decreased placental expression of hPGH, IGF-I and IGFBP-1 in pregnancies complicated by fetal growth restriction. , 2011, Growth hormone & IGF research : official journal of the Growth Hormone Research Society and the International IGF Research Society.
[41] F. Çekmez,et al. Insulin-Like Growth Factor-1 Levels in Twins and Its Correlation With Discordance , 2011, Twin Research and Human Genetics.
[42] Richard D Emes,et al. Quantitative, high-resolution epigenetic profiling of CpG loci identifies associations with cord blood plasma homocysteine and birth weight in humans , 2011, Epigenetics.
[43] James B. Hill,et al. Association of Birth Weight With Polymorphisms in the IGF2, H19, and IGF2R Genes , 2010, Pediatric Research.
[44] S. Ozanne,et al. Early life nutrition and metabolic programming , 2010, Annals of the New York Academy of Sciences.
[45] John B Carlin,et al. DNA methylation analysis of multiple tissues from newborn twins reveals both genetic and intrauterine components to variation in the human neonatal epigenome. , 2010, Human molecular genetics.
[46] T. Lehner,et al. The Netherlands Twin Register Biobank: A Resource for Genetic Epidemiological Studies , 2010, Twin Research and Human Genetics.
[47] Philippe Froguel,et al. Variants in ADCY5 and near CCNL1 are associated with fetal growth and birth weight , 2010, Nature Genetics.
[48] E. Steegers,et al. Periconceptional Maternal Folic Acid Use of 400 µg per Day Is Related to Increased Methylation of the IGF2 Gene in the Very Young Child , 2009, PloS one.
[49] T. Koepsell,et al. Low birth weight and respiratory disease in adulthood: a population-based case-control study. , 2009, American journal of respiratory and critical care medicine.
[50] P. Visscher,et al. DNA methylation profiles in monozygotic and dizygotic twins , 2009, Nature Genetics.
[51] Hein Putter,et al. Persistent epigenetic differences associated with prenatal exposure to famine in humans , 2008, Proceedings of the National Academy of Sciences.
[52] Jan Deprest,et al. The outcome of monochorionic diamniotic twin gestations in the era of invasive fetal therapy: a prospective cohort study. , 2008, American journal of obstetrics and gynecology.
[53] Y. Pawitan,et al. The Association Between Low Birth Weight and Type 2 Diabetes: Contribution of Genetic Factors , 2008, Epidemiology.
[54] M. D'Alton,et al. Growth abnormalities and multiple gestations. , 2008, Seminars in perinatology.
[55] A. Paulussen,et al. Modeling Genetic and Environmental Factors to Increase Heritability and Ease the Identification of Candidate Genes for Birth Weight: A Twin Study , 2007, Behavior genetics.
[56] T. Coleman,et al. Prevalence of maternal smoking and environmental tobacco smoke exposure during pregnancy and impact on birth weight: retrospective study using Millennium Cohort , 2007, BMC public health.
[57] D. Barker,et al. Developmental origins of adult disease , 2007 .
[58] H. Gjessing,et al. Genetic and environmental influences on birth weight, birth length, head circumference, and gestational age by use of population-based parent-offspring data. , 2007, American journal of epidemiology.
[59] Danielle Posthuma,et al. Netherlands Twin Register: From Twins to Twin Families , 2006, Twin Research and Human Genetics.
[60] R. Weksberg,et al. Unbalanced placental expression of imprinted genes in human intrauterine growth restriction. , 2006, Placenta.
[61] T. Spector,et al. Epigenetic differences arise during the lifetime of monozygotic twins. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[62] Diane M. Tomasic,et al. Meta-Analysis: A Comparison of Approaches , 2005 .
[63] Mark I. McCarthy,et al. Early Life Factors and Blood Pressure at Age 31 Years in the 1966 Northern Finland Birth Cohort , 2004, Hypertension.
[64] G. Mcneill,et al. The role of genetic and environmental factors in the association between birthweight and blood pressure: evidence from meta-analysis of twin studies. , 2004, International journal of epidemiology.
[65] B. Fagerberg,et al. Low birth weight in combination with catch‐up growth predicts the occurrence of the metabolic syndrome in men at late middle age: the Atherosclerosis and Insulin Resistance study , 2004, Journal of internal medicine.
[66] C. Lautier,et al. IGF-I receptor mutations resulting in intrauterine and postnatal growth retardation. , 2003, The New England journal of medicine.
[67] F. Walther,et al. Long-term neurodevelopmental outcome in twin-to-twin transfusion syndrome. , 2003, American journal of obstetrics and gynecology.
[68] J. Fryns,et al. The East Flanders Prospective Twin Survey (EFPTS) , 2006, Twin Research and Human Genetics.
[69] G. Willemsen,et al. Netherlands Twin Register: A Focus on Longitudinal Research , 2002, Twin Research.
[70] S. Thompson,et al. Quantifying heterogeneity in a meta‐analysis , 2002, Statistics in medicine.
[71] H. Gjessing,et al. Paternal contribution to birth weight , 2001, Journal of epidemiology and community health.
[72] H. Syddall,et al. Birth weight and the risk of depressive disorder in late life , 2001, British Journal of Psychiatry.
[73] J. Neilson,et al. Genes or placenta as modulator of fetal growth: evidence from the insulin-like growth factor axis in twins with discordant growth. , 2001, Molecular human reproduction.
[74] A. Lucas,et al. Impact of Low Birth Weight and Cardiovascular Risk Factors on Endothelial Function in Early Adult Life , 2001, Circulation.
[75] P. Auinger,et al. Impact of low birth weight on early childhood asthma in the United States. , 2001, Archives of pediatrics & adolescent medicine.
[76] D. Dunger,et al. Size at birth and cord blood levels of insulin, insulin-like growth factor I (IGF-I), IGF-II, IGF-binding protein-1 (IGFBP-1), IGFBP-3, and the soluble IGF-II/mannose-6-phosphate receptor in term human infants. The ALSPAC Study Team. Avon Longitudinal Study of Pregnancy and Childhood. , 2000, The Journal of clinical endocrinology and metabolism.
[77] S Cnattingius,et al. Genetic influence on birthweight and gestational length determined by studies in offspring of twins , 2000, BJOG : an international journal of obstetrics and gynaecology.
[78] K. Leveno,et al. Birth weight in relation to morbidity and mortality among newborn infants. , 1999, The New England journal of medicine.
[79] C Osmond,et al. The relation of small head circumference and thinness at birth to death from cardiovascular disease in adult life. , 1993, BMJ.
[80] E. Desmedt,et al. Acute Polyhydramnios in Twin Pregnancies , 1990, The Australian & New Zealand journal of obstetrics & gynaecology.
[81] L. Berstein,et al. WEIGHT IN INFANCY AND DEATH FROM ISCHAEMIC HEART DISEASE , 1989, The Lancet.
[82] M. Kramer. Intrauterine growth and gestational duration determinants. , 1987, Pediatrics.
[83] C. Osmond,et al. INFANT MORTALITY, CHILDHOOD NUTRITION, AND ISCHAEMIC HEART DISEASE IN ENGLAND AND WALES , 1986, The Lancet.
[84] M C McCormick,et al. The contribution of low birth weight to infant mortality and childhood morbidity. , 1985, The New England journal of medicine.
[85] P. Magnus. Further evidence for a significant effect of fetal genes on variation in birth weight , 1984, Clinical genetics.
[86] P. Magnus. Causes of variation in birth weight: A study of offspring of twins , 1984, Clinical genetics.
[87] F. Battaglia,et al. A practical classification of newborn infants by weight and gestational age. , 1967, The Journal of pediatrics.
[88] C. Osmond,et al. Type 2 (non-insulin-dependent) diabetes mellitus, hypertension and hyperlipidaemia (syndrome X): relation to reduced fetal growth , 2004, Diabetologia.
[89] C. Cooper,et al. Birthweight is associated with bone mass in the-seventh decade: The Hertfordshire 31-39 study , 2003 .
[90] H. Snieder,et al. Testing the fetal origins hypothesis in twins: the Birmingham twin study , 2001, Diabetologia.
[91] M S Kramer,et al. Determinants of low birth weight: methodological assessment and meta-analysis. , 1987, Bulletin of the World Health Organization.