Epigenome-wide Association Study of Attention-Deficit/Hyperactivity Disorder Symptoms in Adults
暂无分享,去创建一个
A. Caspi | D. Corcoran | K. Sugden | R. Poulton | T. Moffitt | A. Uitterlinden | B. Franke | M. Bonder | C. Wijmenga | C. Duijn | D. Boomsma | J. Mill | M. Swertz | J. Veldink | J. Hottenga | A. Isaacs | M. Beekman | J. Deelen | P. Slagboom | L. Franke | L. Arseneault | M. Vermaat | Patrick Deelen | J. Dongen | P. Hoen | E. Zwet | J. Meurs | R. Jansen | I. Nooren | R. Luijk | Matthijs Moed | J. Bot | P. M. Jhamai | M. Verbiest | H. Suchiman | N. Lakenberg | W. Arindrarto | S. Kiełbasa | E. Tigchelaar | R. Pool | C. Stehouwer | C. Schalkwijk | H. Mei | P. Slagboom | B. Heijmans | F. Dijk | E. Hannon | M. V. Iterson | P. Hoen | D. Heemst | J. Rooij | N. R. Zilhao | C. J. Kallen | S. Zhernakova | B. Hofman | Dasha V. Zhernakova | Michiel van Galen | R. V. D. Breggen | Peter van ‘t Hof | J. Agnew-Blais | L. H. Berg | Marleen M.J. Greevenbroek | M. Verkerk | D. V. Zhernakova | A. Uitterlinden | M. Iterson | D. Boomsma | Nuno R Zilhao | M. Moed | P. V. Hof | Dasha V Zhernakova
[1] Alicia R. Martin,et al. Identification of common genetic risk variants for autism spectrum disorder , 2019, Nature Genetics.
[2] Lachlan T. Strike,et al. Epigenome-wide meta-analysis of blood DNA methylation and its association with subcortical volumes: findings from the ENIGMA Epigenetics Working Group , 2018, bioRxiv.
[3] Alicia R. Martin,et al. Discovery of the first genome-wide significant risk loci for attention deficit/hyperactivity disorder , 2018, Nature Genetics.
[4] A. Uitterlinden,et al. DNA methylation signatures of educational attainment , 2018, npj Science of Learning.
[5] Sina A. Gharib,et al. Identifying gene targets for brain-related traits using transcriptomic and methylomic data from blood , 2018, Nature Communications.
[6] Yankai Xia,et al. Prenatal exposure to maternal smoking during pregnancy and attention-deficit/hyperactivity disorder in offspring: A meta-analysis. , 2018, Reproductive toxicology.
[7] Warren W. Kretzschmar,et al. Genome-wide association analyses identify 44 risk variants and refine the genetic architecture of major depression , 2017, Nature Genetics.
[8] Tom R. Gaunt,et al. A Methylome‐Wide Association Study of Trajectories of Oppositional Defiant Behaviors and Biological Overlap With Attention Deficit Hyperactivity Disorder , 2017, Child development.
[9] W. Iacono,et al. Increased Risk of Smoking in Female Adolescents Who Had Childhood ADHD. , 2018, The American journal of psychiatry.
[10] Min A. Jhun,et al. Meta-analysis of epigenome-wide association studies of cognitive abilities , 2018, Molecular Psychiatry.
[11] Jakob Grove,et al. Common risk variants identified in autism spectrum disorder , 2017, bioRxiv.
[12] R. Joober,et al. Locus-specific DNA methylation changes and phenotypic variability in children with attention-deficit hyperactivity disorder , 2017, Psychiatry Research.
[13] R. Lyle,et al. Long-term prenatal exposure to paracetamol is associated with DNA methylation differences in children diagnosed with ADHD , 2017, Clinical Epigenetics.
[14] M. Beckmann,et al. Attention, cognitive control and motivation in ADHD: Linking event-related brain potentials and DNA methylation patterns in boys at early school age , 2017, Scientific Reports.
[15] G. Reynolds,et al. DAT1 methylation is associated with methylphenidate response on oppositional and hyperactive-impulsive symptoms in children and adolescents with ADHD , 2017, The world journal of biological psychiatry : the official journal of the World Federation of Societies of Biological Psychiatry.
[16] Daniel P. Newman,et al. Rare DNA variants in the brain-derived neurotrophic factor gene increase risk for attention-deficit hyperactivity disorder: a next-generation sequencing study , 2017, Molecular Psychiatry.
[17] M. Kobor,et al. BECon: a tool for interpreting DNA methylation findings from blood in the context of brain , 2017, Translational Psychiatry.
[18] Tom R. Gaunt,et al. Prenatal unhealthy diet, insulin‐like growth factor 2 gene (IGF2) methylation, and attention deficit hyperactivity disorder symptoms in youth with early‐onset conduct problems , 2016, Journal of child psychology and psychiatry, and allied disciplines.
[19] A. Hofman,et al. Disease variants alter transcription factor levels and methylation of their binding sites , 2016, Nature Genetics.
[20] Alan M. Zaslavsky,et al. The descriptive epidemiology of DSM-IV Adult ADHD in the World Health Organization World Mental Health Surveys , 2017, ADHD Attention Deficit and Hyperactivity Disorders.
[21] A. Sharp,et al. DNA Methylation Signatures of Early Childhood Malnutrition Associated With Impairments in Attention and Cognition , 2016, Biological Psychiatry.
[22] Paolo Vineis,et al. Epigenetic Signatures of Cigarette Smoking , 2016, Circulation. Cardiovascular genetics.
[23] V. Faundez,et al. The Endosome Localized Arf-GAP AGAP1 Modulates Dendritic Spine Morphology Downstream of the Neurodevelopmental Disorder Factor Dysbindin , 2016, Front. Cell. Neurosci..
[24] Robin M. Murray,et al. An integrated genetic-epigenetic analysis of schizophrenia: evidence for co-localization of genetic associations and differential DNA methylation , 2016, Genome Biology.
[25] A. Danese,et al. Evaluation of the Persistence, Remission, and Emergence of Attention-Deficit/Hyperactivity Disorder in Young Adulthood. , 2016, JAMA psychiatry.
[26] A. Hofman,et al. Blood lipids influence DNA methylation in circulating cells , 2016, Genome Biology.
[27] B. Franke,et al. Whole-Exome Sequencing Reveals Increased Burden of Rare Functional and Disruptive Variants in Candidate Risk Genes in Individuals With Persistent Attention-Deficit/Hyperactivity Disorder. , 2016, Journal of the American Academy of Child and Adolescent Psychiatry.
[28] P. Eline Slagboom,et al. Controlling bias and inflation in epigenome- and transcriptome-wide association studies using the empirical null distribution , 2016, bioRxiv.
[29] Tom R. Gaunt,et al. Epigenetic profiling of ADHD symptoms trajectories: A prospective, methylome-wide study , 2016, Molecular Psychiatry.
[30] Charles Auffray,et al. DNA Methylation in Newborns and Maternal Smoking in Pregnancy: Genome-wide Consortium Meta-analysis. , 2016, American journal of human genetics.
[31] E. Garne,et al. Fever and infections in pregnancy and risk of attention deficit/hyperactivity disorder in the offspring. , 2016, Journal of child psychology and psychiatry, and allied disciplines.
[32] A. Uitterlinden,et al. Genetic and environmental influences interact with age and sex in shaping the human methylome , 2016, Nature Communications.
[33] Jingyu Liu,et al. Correspondence of DNA Methylation Between Blood and Brain Tissue and Its Application to Schizophrenia Research. , 2016, Schizophrenia bulletin.
[34] M. Dadds,et al. Epigenetic regulation of the DRD4 gene and dimensions of attention-deficit/hyperactivity disorder in children , 2016, European Child & Adolescent Psychiatry.
[35] Sarah E. Reese,et al. Maternal plasma folate impacts differential DNA methylation in an epigenome-wide meta-analysis of newborns , 2016, Nature Communications.
[36] J. Nigg,et al. Methylomic analysis of salivary DNA in childhood ADHD identifies altered DNA methylation in VIPR2. , 2016, Journal of child psychology and psychiatry, and allied disciplines.
[37] Giulio Genovese,et al. Schizophrenia risk from complex variation of complement component 4 , 2016, Nature.
[38] J. Mill,et al. Interindividual methylomic variation across blood, cortex, and cerebellum: implications for epigenetic studies of neurological and neuropsychiatric phenotypes , 2015, Epigenetics.
[39] J. Cheong,et al. Associations between serotonin transporter gene (SLC6A4) methylation and clinical characteristics and cortical thickness in children with ADHD , 2015, Psychological Medicine.
[40] D. Belsky,et al. Is Adult ADHD a Childhood-Onset Neurodevelopmental Disorder? Evidence From a Four-Decade Longitudinal Cohort Study. , 2015, The American journal of psychiatry.
[41] Bin-Rang Yang,et al. Multiple epigenetic factors predict the attention deficit/hyperactivity disorder among the Chinese Han children. , 2015, Journal of psychiatric research.
[42] Tiphaine C. Martin,et al. coMET: visualisation of regional epigenome-wide association scan results and DNA co-methylation patterns , 2015, BMC Bioinformatics.
[43] M. Daly,et al. An Atlas of Genetic Correlations across Human Diseases and Traits , 2015, Nature Genetics.
[44] Richie Poulton,et al. The Dunedin Multidisciplinary Health and Development Study: overview of the first 40 years, with an eye to the future , 2015, Social Psychiatry and Psychiatric Epidemiology.
[45] P. Elliott,et al. A coherent approach for analysis of the Illumina HumanMethylation450 BeadChip improves data quality and performance in epigenome-wide association studies , 2015, Genome Biology.
[46] P. Eline Slagboom,et al. MethylAid: visual and interactive quality control of large Illumina 450k datasets , 2014, Bioinform..
[47] B. Neale,et al. Attention-deficit/hyperactivity disorder polygenic risk scores predict attention problems in a population-based sample of children. , 2014, Journal of the American Academy of Child and Adolescent Psychiatry.
[48] C. Spencer,et al. Biological Insights From 108 Schizophrenia-Associated Genetic Loci , 2014, Nature.
[49] Pieter B. T. Neerincx,et al. Supplementary Information Whole-genome sequence variation , population structure and demographic history of the Dutch population , 2022 .
[50] K. Hansen,et al. Functional normalization of 450k methylation array data improves replication in large cancer studies , 2014, Genome Biology.
[51] A. Hofman,et al. DNA methylation profiles at birth and child ADHD symptoms. , 2014, Journal of psychiatric research.
[52] Nicholas G Martin,et al. Contribution of genetic variation to transgenerational inheritance of DNA methylation , 2014, Genome Biology.
[53] Eric-Wubbo Lameijer,et al. Identification and systematic annotation of tissue-specific differentially methylated regions using the Illumina 450k array , 2013, Epigenetics & Chromatin.
[54] Ruth Pidsley,et al. A data-driven approach to preprocessing Illumina 450K methylation array data , 2013, BMC Genomics.
[55] P. Sullivan,et al. Population structure, migration, and diversifying selection in the Netherlands , 2013, European Journal of Human Genetics.
[56] P. Lichtenstein,et al. Developmental twin study of attention problems: high heritabilities throughout development. , 2013, JAMA psychiatry.
[57] R. Weksberg,et al. Discovery of cross-reactive probes and polymorphic CpGs in the Illumina Infinium HumanMethylation450 microarray , 2013, Epigenetics.
[58] 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.
[59] A. Thapar,et al. Practitioner Review: What have we learnt about the causes of ADHD? , 2013, Journal of Child Psychology and Psychiatry, and Allied Disciplines.
[60] Pau Farré,et al. Additional annotation enhances potential for biologically-relevant analysis of the Illumina Infinium HumanMethylation450 BeadChip array , 2013, Epigenetics & Chromatin.
[61] Brent S. Pedersen,et al. Comb-p: software for combining, analyzing, grouping and correcting spatially correlated P-values , 2012, Bioinform..
[62] Devin C. Koestler,et al. DNA methylation arrays as surrogate measures of cell mixture distribution , 2012, BMC Bioinformatics.
[63] P. Lichtenstein,et al. Childhood attention-deficit hyperactivity disorder as an extreme of a continuous trait: a quantitative genetic study of 8,500 twin pairs. , 2012, Journal of child psychology and psychiatry, and allied disciplines.
[64] Catharina E. M. van Beijsterveldt,et al. Evidence for a causal association of low birth weight and attention problems. , 2011, Journal of the American Academy of Child and Adolescent Psychiatry.
[65] Jennifer R Harris,et al. Extensive variation and low heritability of DNA methylation identified in a twin study. , 2011, Genome research.
[66] R. Kessler,et al. Structure and diagnosis of adult attention-deficit/hyperactivity disorder: analysis of expanded symptom criteria from the Adult ADHD Clinical Diagnostic Scale. , 2010, Archives of general psychiatry.
[67] P. Greengard,et al. AGAP1/AP‐3‐dependent endocytic recycling of M5 muscarinic receptors promotes dopamine release , 2010, The EMBO journal.
[68] Yun Li,et al. METAL: fast and efficient meta-analysis of genomewide association scans , 2010, Bioinform..
[69] T. Lehner,et al. The Netherlands Twin Register Biobank: A Resource for Genetic Epidemiological Studies , 2010, Twin Research and Human Genetics.
[70] G. Willemsen,et al. Genetic Epidemiology of Attention Deficit Hyperactivity Disorder (ADHD Index) in Adults , 2010, PloS one.
[71] Hein Putter,et al. Persistent epigenetic differences associated with prenatal exposure to famine in humans , 2008, Proceedings of the National Academy of Sciences.
[72] Arturas Petronis,et al. Pre- and peri-natal environmental risks for attention-deficit hyperactivity disorder (ADHD): the potential role of epigenetic processes in mediating susceptibility. , 2008, Journal of child psychology and psychiatry, and allied disciplines.
[73] R. Barkley,et al. ADHD in Adults: What the Science Says , 2007 .
[74] L. Rohde,et al. Epidemiology of attention-deficit/hyperactivity disorder across the lifespan , 2007, Current opinion in psychiatry.
[75] C. Moore,et al. Prevalence and Correlates of ADHD Symptoms in the National Health Interview Survey , 2005, Journal of attention disorders.
[76] K. Macey. Conners' Adult ADHD Rating Scales (CAARS). , 2003 .
[77] T. Moffitt. Teen-aged mothers in contemporary Britain. , 2002, Journal of child psychology and psychiatry, and allied disciplines.
[78] M. Jeanpierre. A rapid method for the purification of DNA from blood. , 1987, Nucleic acids research.
[79] D. Bowtell,et al. Rapid isolation of eukaryotic DNA. , 1987, Analytical biochemistry.