Literature DB >> 19506906

Candidate gene studies of ADHD: a meta-analytic review.

Ian R Gizer1, Courtney Ficks, Irwin D Waldman.   

Abstract

Quantitative genetic studies (i.e., twin and adoption studies) suggest that genetic influences contribute substantially to the development of attention deficit hyperactivity disorder (ADHD). Over the past 15 years, considerable efforts have been made to identify genes involved in the etiology of this disorder resulting in a large and often conflicting literature of candidate gene associations for ADHD. The first aim of the present study was to conduct a comprehensive meta-analytic review of this literature to determine which candidate genes show consistent evidence of association with childhood ADHD across studies. The second aim was to test for heterogeneity across studies in the effect sizes for each candidate gene as its presence might suggest moderating variables that could explain inconsistent results. Significant associations were identified for several candidate genes including DAT1, DRD4, DRD5, 5HTT, HTR1B, and SNAP25. Further, significant heterogeneity was observed for the associations between ADHD and DAT1, DRD4, DRD5, DBH, ADRA2A, 5HTT, TPH2, MAOA, and SNAP25, suggesting that future studies should explore potential moderators of these associations (e.g., ADHD subtype diagnoses, gender, exposure to environmental risk factors). We conclude with a discussion of these findings in relation to emerging themes relevant to future studies of the genetics of ADHD.

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Year:  2009        PMID: 19506906     DOI: 10.1007/s00439-009-0694-x

Source DB:  PubMed          Journal:  Hum Genet        ISSN: 0340-6717            Impact factor:   4.132


  342 in total

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Authors:  Y Okuyama; H Ishiguro; M Toru; T Arinami
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Authors:  J W Kim; J Biederman; L Arbeitman; J Fagerness; A E Doyle; C Petty; R H Perlis; S Purcell; J W Smoller; S V Faraone; P Sklar
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  333 in total

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3.  DAT1 and COMT effects on delay discounting and trait impulsivity in male adolescents with attention deficit/hyperactivity disorder and healthy controls.

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4.  Striatal sensitivity during reward processing in attention-deficit/hyperactivity disorder.

Authors:  Yannis Paloyelis; Mitul A Mehta; Stephen V Faraone; Philip Asherson; Jonna Kuntsi
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5.  Genetic influences on ADHD symptom dimensions: Examination of a priori candidates, gene-based tests, genome-wide variation, and SNP heritability.

Authors:  L Cinnamon Bidwell; Joshua C Gray; Jessica Weafer; Abraham A Palmer; Harriet de Wit; James MacKillop
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6.  Potential contribution of dopaminergic gene variants in ADHD core traits and co-morbidity: a study on eastern Indian probands.

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7.  Neuropsychiatric disease-associated genetic variants of the dopamine transporter display heterogeneous molecular phenotypes.

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9.  A Hierarchical Factor Model of Executive Functions in Adolescents: Evidence of Gene-Environment Interplay.

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Review 10.  Association of Serotonin Receptors with Attention Deficit Hyperactivity Disorder: A Systematic Review and Meta-analysis.

Authors:  Yu-Wei Hou; Ping Xiong; Xue Gu; Xin Huang; Min Wang; Jing Wu
Journal:  Curr Med Sci       Date:  2018-06-22
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