Cognitive manic symptoms associated with the P2RX7 gene in bipolar disorder
暂无分享,去创建一个
M. Landén | G. Edman | M. Schalling | U. Ösby | L. Backlund | L. Frisén | P. Nikamo | L. Träskman-bendz | D. S. Hukic | Inger Römer Ek
[1] M. Landén,et al. Elevation of cerebrospinal fluid interleukin-1ß in bipolar disorder. , 2011, Journal of psychiatry & neuroscience : JPN.
[2] E. Severance,et al. Immune activation by casein dietary antigens in bipolar disorder. , 2010, Bipolar disorders.
[3] M. Schalling,et al. CRY2 Is Associated with Rapid Cycling in Bipolar Disorder Patients , 2010, PloS one.
[4] Daniel L. Koller,et al. Coming to grips with complex disorders: Genetic risk prediction in bipolar disorder using panels of genes identified through convergent functional genomics , 2010, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[5] A. Niculescu,et al. The P‐value illusion: How to improve (psychiatric) genetic studies , 2010, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[6] J. Blackwell,et al. Evidence for associations between the purinergic receptor P2X7 (P2RX7) and toxoplasmosis , 2010, Genes and Immunity.
[7] S. Skaper,et al. The P2X7 purinergic receptor: from physiology to neurological disorders , 2010, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[8] G. Kirov,et al. P2RX7: A bipolar and unipolar disorder candidate susceptibility gene? , 2009, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[9] A. Young,et al. The role of dopamine in bipolar disorder. , 2009, Bipolar disorders.
[10] S. Praharaj,et al. Factor Structure of Manic Symptoms , 2009, The Australian and New Zealand journal of psychiatry.
[11] Thomas W. Mühleisen,et al. Variation in P2RX7 candidate gene (rs2230912) is not associated with bipolar I disorder and unipolar major depression in four European samples , 2009, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[12] J. Gádoros,et al. G72/G30 (DAOA) and juvenile‐onset mood disorders , 2009, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[13] M. Rietschel,et al. Dissecting the phenotype in genome-wide association studies of psychiatric illness , 2009, British Journal of Psychiatry.
[14] G. Kirov,et al. Age-at-onset in bipolar-I disorder: mixture analysis of 1369 cases identifies three distinct clinical sub-groups. , 2009, Journal of affective disorders.
[15] S. Kapoor. Systemic and psychiatric disorders associated with polymorphisms of the P2RX7 gene , 2009, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[16] A. McQuillin,et al. Case–control studies show that a non-conservative amino-acid change from a glutamine to arginine in the P2RX7 purinergic receptor protein is associated with both bipolar- and unipolar-affective disorders , 2009, Molecular Psychiatry.
[17] S. Purcell,et al. A genomewide association study of response to lithium for prevention of recurrence in bipolar disorder. , 2009, The American journal of psychiatry.
[18] A. Székely,et al. Association between depression and the Gln460Arg polymorphism of P2RX7 Gene: A dimensional approach , 2009, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[19] F. Levy. Dopamine vs Noradrenaline: Inverted-U Effects and ADHD Theories , 2009, The Australian and New Zealand journal of psychiatry.
[20] J. Gargus. Genetic Calcium Signaling Abnormalities in the Central Nervous System: Seizures, Migraine, and Autism , 2009, Annals of the New York Academy of Sciences.
[21] S. Apolloni,et al. Membrane compartments and purinergic signalling: P2X receptors in neurodegenerative and neuroinflammatory events , 2009, The FEBS journal.
[22] D. Glahn,et al. Cognitive impairment in bipolar disorder: Neurodevelopment or neurodegeneration? An ECNP expert meeting report , 2008, European Neuropsychopharmacology.
[23] Ann-Christine Ehlis,et al. Reduced lateral prefrontal activation in adult patients with attention-deficit/hyperactivity disorder (ADHD) during a working memory task: a functional near-infrared spectroscopy (fNIRS) study. , 2008, Journal of psychiatric research.
[24] Manuel A. R. Ferreira,et al. Collaborative genome-wide association analysis supports a role for ANK3 and CACNA1C in bipolar disorder , 2008, Nature Genetics.
[25] G. Burnstock. Purinergic signalling and disorders of the central nervous system , 2008, Nature Reviews Drug Discovery.
[26] M. Bourin,et al. Dopamine dysregulation syndrome: implications for a dopamine hypothesis of bipolar disorder , 2007, Acta psychiatrica Scandinavica. Supplementum.
[27] Manuel A. R. Ferreira,et al. PLINK: a tool set for whole-genome association and population-based linkage analyses. , 2007, American journal of human genetics.
[28] F. Holsboer,et al. Association of polymorphisms in P2RX7 and CaMKKb with anxiety disorders. , 2007, Journal of affective disorders.
[29] J. Lagopoulos,et al. An event-related functional MRI study of working memory in euthymic bipolar disorder. , 2007, Journal of psychiatry & neuroscience : JPN.
[30] Jules J. E. Doré,et al. Calcium Influx through L-type Channels Generates Protein Kinase M to Induce Burst Firing of Dopamine Cells in the Rat Ventral Tegmental Area* , 2007, Journal of Biological Chemistry.
[31] F. Holsboer,et al. P2RX7, a gene coding for a purinergic ligand-gated ion channel, is associated with major depressive disorder. , 2006, Human molecular genetics.
[32] J. Gargus,et al. Ion Channel Functional Candidate Genes in Multigenic Neuropsychiatric Disease , 2006, Biological Psychiatry.
[33] E. Shink,et al. Analysis of single nucleotide polymorphisms in genes in the chromosome 12Q24.31 region points to P2RX7 as a susceptibility gene to bipolar affective disorder , 2006, American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics.
[34] B. Sperlágh,et al. P2X7 receptors in the nervous system , 2006, Progress in Neurobiology.
[35] S. Rauch,et al. Impaired Recruitment of the Dorsolateral Prefrontal Cortex and Hippocampus During Encoding in Bipolar Disorder , 2006, Biological Psychiatry.
[36] S. Cichon,et al. Genotype-phenotype studies in bipolar disorder showing association between the DAOA/G30 locus and persecutory delusions: a first step toward a molecular genetic classification of psychiatric phenotypes. , 2005, The American journal of psychiatry.
[37] J. Morissette,et al. A genome-wide scan points to a susceptibility locus for bipolar disorder on chromosome 12 , 2005, Molecular Psychiatry.
[38] P. Anand,et al. Disruption of the P2X7 purinoceptor gene abolishes chronic inflammatory and neuropathic pain , 2005, Pain.
[39] T. Robbins,et al. Chemistry of the adaptive mind , 2004, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[40] R. Murray,et al. A functional MRI study of working memory task in euthymic bipolar disorder: evidence for task-specific dysfunction. , 2004, Bipolar disorders.
[41] J. Kaprio,et al. High concordance of bipolar I disorder in a nationwide sample of twins. , 2004, The American journal of psychiatry.
[42] F. Dudbridge. Pedigree disequilibrium tests for multilocus haplotypes , 2003, Genetic epidemiology.
[43] A. Serretti,et al. Gene–environment interaction in psychiatric disorders as indicated by season of birth variations in tryptophan hydroxylase (TPH), serotonin transporter (5-HTTLPR) and dopamine receptor (DRD4) gene polymorphisms , 2003, Psychiatry Research.
[44] P. Sham,et al. The heritability of bipolar affective disorder and the genetic relationship to unipolar depression. , 2003, Archives of general psychiatry.
[45] M. Farrow,et al. Working memory in ADHD: prefrontal/parietal connections. , 2001, Current drug targets.
[46] B. Khakh. Molecular physiology of p2x receptors and atp signalling at synapses , 2001, Nature Reviews Neuroscience.
[47] M. Rietschel,et al. Factor analysis of mania. , 1999, Archives of general psychiatry.
[48] L. Petrangeli,et al. Schedules for Clinical Assessment in Neuropsychiatry , 1997, Epidemiologia e Psichiatria Sociale.
[49] N. Craddock,et al. Concurrent Validity of the Opcrit Diagnostic System , 1996, British Journal of Psychiatry.
[50] Edward E. Smith,et al. A Parametric Study of Prefrontal Cortex Involvement in Human Working Memory , 1996, NeuroImage.
[51] N C Andreasen,et al. The Comprehensive Assessment of Symptoms and History (CASH). An instrument for assessing diagnosis and psychopathology. , 1992, Archives of general psychiatry.
[52] A. Farmer,et al. A polydiagnostic application of operational criteria in studies of psychotic illness. Development and reliability of the OPCRIT system. , 1991, Archives of general psychiatry.
[53] T. Brugha,et al. SCAN. Schedules for Clinical Assessment in Neuropsychiatry. , 1990, Archives of general psychiatry.
[54] D. Double. The factor structure of manic rating scales. , 1990, Journal of affective disorders.
[55] S. Faraone,et al. Familial Transmission of Major Affective Disorders , 1985, British Journal of Psychiatry.
[56] M A Young,et al. Establishing Diagnostic Criteria for Mania , 1983, The Journal of nervous and mental disease.
[57] R. C. Young,et al. A Rating Scale for Mania: Reliability, Validity and Sensitivity , 1978, British Journal of Psychiatry.