题名

Gene Polymorphisms of Cognitive Function in Patients with Bipolar Disorder: A Systematic Review and Meta-analysis

DOI

10.4103/TPSY.TPSY_2_20

作者

Jung-Chieh Chen;Ying-Chih Cheng;Hsing-Cheng Liu;Po-Hsiu Kuo;Ming-Chyi Huang;Wen-Yin Chen

关键词

genetic variants ; global intelligence quotient ; single-nucleotide polymorphism ; Wisconsin Card Sorting test

期刊名称

台灣精神醫學

卷期/出版年月

34卷1期(2020 / 03 / 01)

页次

25 - 34

内容语文

英文

中文摘要

Objectives: Evidence showed that the etiology of cognitive impairment in bipolar disorder (BD) is related to genetic susceptibility. But results from many studies evaluating the association between candidate genes and cognitive function in BD are inconsistent. To define the effect of risk target single-nucleotide polymorphisms (SNPs) on the association of cognition in BD, we did a systematic review and meta-analysis to study the risk genetic variants. Methods: A search for literature was conducted through online databases updated as of October 2018. Recruited studies were compared for cognitive difference in BD patients with certain gene polymorphisms. Results: Meta-analyses were conducted, for two SNPs of target genes including brain-derived neurotrophic factor (rs6265) and calcium channel, voltage-dependent, L type, alpha 1C subunit (rs1006737), in the recruited seven studies. Quantitative analysis showed no significance in the association between the polymorphisms of rs6265 or rs1006737 with global intelligence quotient or rs6265 with Wisconsin Card Sorting test in BD. Conclusion: Our results implied that the cognitive impairment in patients with BD might not be explained by a SNP in current evidence. We suggest that further studies with larger sample size and deeper phenotype are needed to elucidate the relevance of gene variant model contributed to the susceptibility of cognitive dysfunction in patients with BD.

主题分类 醫藥衛生 > 社會醫學
参考文献
  1. Ali, SO,Denicoff, KD,Altshuler, LL(2000).A preliminary study of the relation of neuropsychological performance to neuroanatomic structures in bipolar disorder.Neuropsychiatry Neuropsychol Behav Neurol,13,20-28.
  2. Arnsten, AF,Wang, MJ,Paspalas, CD(2012).Neuromodulation of thought: flexibilities and vulnerabilities in prefrontal cortical network synapses.Neuron,76,223-239.
  3. Atre-Vaidya, N,Taylor, MA,Seidenberg, M(1998).Cognitive deficits, psychopathology, and psychosocial functioning in bipolar mood disorder.Neuropsychiatry Neuropsychol Behav Neurol,11,120-126.
  4. Bienvenu, OJ,Davydow, DS,Kendler, KS(2011).Psychiatric ‘diseases’ versus behavioral disorders and degree of genetic influence.Psychol Med,41,33-40.
  5. Bora, E,Pantelis, C(2015).Meta-analysis of cognitive impairment in first-episode bipolar Disorder: comparison with first-episode schizophrenia and healthy controls.Schizophr Bull,41,1095-1104.
  6. Burdick, KE,Funke, B,Goldberg, JF(2007).COMT genotype increases risk for bipolar I disorder and influences neurocognitive performance.Bipolar Disord,9,370-376.
  7. Dima, D,Jogia, J,Collier, D(2013).Independent modulation of engagement and connectivity of the facial network during affect processing by CACNA1C and ANK3 risk genes for bipolar disorder.JAMA Psychiatry,70,1303-1311.
  8. Doan, NT,Kaufmann, T,Bettella, F(2017).Distinct multivariate brain morphological patterns and their added predictive value with cognitive and polygenic risk scores in mental disorders.Neuroimage Clin,15,719-731.
  9. Duarte, W,Becerra, R,Cruise, K(2016).The relationship between neurocognitive functioning and occupational functioning in bipolar disorder: a literature review.Eur J Psychol,12,659-678.
  10. Egan, MF,Kojima, M,Callicott, JH(2003).The BDNF val66met polymorphism affects activity-dependent secretion of BDNF and human memory and hippocampal function.Cell,112,257-269.
  11. Ferrari, AJ,Stockings, E,Khoo, JP(2016).The prevalence and burden of bipolar disorder: findings from the Global Burden of Disease Study 2013.Bipolar Disord,18,440-450.
  12. Ferreira, MA,O’Donovan, MC,Meng, YA(2008).Collaborative genome-wide association analysis supports a role for ANK3 and CACNA1C in bipolar disorder.Nat Genet,40,1056-1058.
  13. Georgiades, A,Rijsdijk, F,Kane, F(2016).New insights into the endophenotypic status of cognition in bipolar disorder: genetic modelling study of twins and siblings.Br J Psychiatry,208,539-547.
  14. Georgieva, L,Dimitrova, A,Ivanov, D(2008).Support for neuregulin 1 as a susceptibility gene for bipolar disorder and schizophrenia.Biol Psychiatry,64,419-427.
  15. Goldberg, JF,Harrow, M,Grossman, LS(1995).Course and outcome in bipolar affective disorder: a longitudinal follow-up study.Am J Psychiatry,152,379-384.
  16. Kaalund, SS,Newburn, EN,Ye, T(2014).Contrasting changes in DRD1 and DRD2 splice variant expression in schizophrenia and affective disorders, and associations with SNPs in postmortem brain.Mol Psychiatry,19,1258-1266.
  17. Kato, T(2008).Role of mitochondrial DNA in calcium signaling abnormality in bipolar disorder.Cell Calcium,44,92-102.
  18. Lin, K,Xu, G,Shi, L(2017).CACNA1C polymorphisms impact cognitive recovery in patients with bipolar disorder in a six-week open-label trial.Sci Rep,7,7022.
  19. Lin, PI,Mitchell, BD(2008).Approaches for unraveling the joint genetic determinants of schizophrenia and bipolar disorder.Schizophr Bull,34,791-797.
  20. Luchini, C,Stubbs, B,Solmi, M(2017).Assessing the quality of studies in meta-analyses: advantages and limitations of the Newcastle Ottawa scale.World J Metaanal,5,80-84.
  21. Missale, C,Nash, SR,Robinson, SW(1998).Dopamine receptors: from structure to function.Physiol Rev,78,189-225.
  22. Ranlund, S,Calafato, S,Thygesen, JH(2018).A polygenic risk score analysis of psychosis endophenotypes across brain functional, structural, and cognitive domains.Am J Med Genet B Neuropsychiatr Genet,177,21-34.
  23. Rolstad, S,Pålsson, E,Ekman, CJ(2015).Polymorphisms of dopamine pathway genes NRG1 and LMX1A are associated with cognitive performance in bipolar disorder.Bipolar Disord,17,859-868.
  24. Rolstad, S,Sellgren Majkowitz, C,Joas, E(2016).Polymorphisms of BDNF and CACNA1C are not associated with cognitive functioning in bipolar disorder or healthy controls.Cogn Neuropsychiatry,21,271-278.
  25. Ruberto, G,Vassos, E,Lewis, CM(2011).The cognitive impact of the ANK3 risk variant for bipolar disorder: initial evidence of selectivity to signal detection during sustained attention.PLoS One,6,e16671.
  26. Rybakowski, JK,Borkowska, A,Czerski, PM(2003).Polymorphism of the brain-derived neurotrophic factor gene and performance on a cognitive prefrontal test in bipolar patients.Bipolar Disord,5,468-472.
  27. Rybakowski, JK,Borkowska, A,Skibinska, M(2006).Prefrontal cognition in schizophrenia and bipolar illness in relation to Val66Met polymorphism of the brain-derived neurotrophic factor gene.Psychiatry Clin Neurosci,60,70-76.
  28. Soeiro-de-Souza, MG,Bio, DS,Dias, VV(2013).The CACNA1C risk allele selectively impacts on executive function in bipolar type I disorder.Acta Psychiatr Scand,128,362-369.
  29. Soeiro-de-Souza, MG,Machado-Vieira, R,Soares Bio, D(2012).COMT polymorphisms as predictors of cognitive dysfunction during manic and mixed episodes in bipolar I disorder.Bipolar Disord,14,554-564.
  30. Solé, B,Jiménez, E,Torrent, C(2017).cognitive impairment in bipolar disorder: treatment and prevention strategies.Int J Neuropsychopharmacol,20,670-680.
  31. Torres, IJ,Boudreau, VG,Yatham, LN(2007).Neuropsychological functioning in euthymic bipolar disorder: a meta-analysis.Acta Psychiatr Scand Suppl,434,17-26.
  32. Tramontina, JF,Yates, D,Magalhães, PV(2009).Brain-derived neurotrophic factor gene val66met polymorphism and executive functioning in patients with bipolar disorder.Braz J Psychiatry,31,136-140.
  33. Vijayraghavan, S,Wang, M,Birnbaum, SG(2007).Inverted-U dopamine D1 receptor actions on prefrontal neurons engaged in working memory.Nat Neurosci,10,376-384.
  34. Warsh, JJ,Andreopoulos, S,Li, PP(2004).Role of intracellular calcium signaling in the pathophysiology and pharmacotherapy of bipolar disorder: current status.Clin Neurosci Res,4,201-213.
  35. Wirgenes, KV,Djurovic, S,Sundet, K(2010).Catechol O-methyltransferase variants and cognitive performance in schizophrenia and bipolar disorder versus controls.Schizophr Res,122,31-37.
  36. Zeni, CP,Tramontina, S,Zeni, TA(2013).The Val66Met polymorphism at the BDNF gene does not influence Wisconsin Card Sorting Test results in children and adolescents with bipolar disorder.Braz J Psychiatry,35,44-50.
  37. Zhang, Q,Shen, Q,Xu, Z(2012).The effects of CACNA1C gene polymorphism on spatial working memory in both healthy controls and patients with schizophrenia or bipolar disorder.Neuropsychopharmacology,37,677-684.