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Dive into the research topics where Alejandro Arias-Vasquez is active.

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Featured researches published by Alejandro Arias-Vasquez.


Archives of General Psychiatry | 2010

Separation of Cognitive Impairments in Attention-Deficit/Hyperactivity Disorder Into 2 Familial Factors

Jonna Kuntsi; Alexis C. Wood; Fruehling V. Rijsdijk; Katherine A. Johnson; Penelope Andreou; Bjoern Albrecht; Alejandro Arias-Vasquez; Jan Buitelaar; Gráinne McLoughlin; Nanda Rommelse; Joseph A. Sergeant; Edmund Sonuga-Barke; Henrik Uebel; Jaap J. van der Meere; Tobias Banaschewski; Michael Gill; Iris Manor; Ana Miranda; Fernando Mulas; Robert D. Oades; Herbert Roeyers; Aribert Rothenberger; Hans-Christoph Steinhausen; Stephen V. Faraone; Philip Asherson

CONTEXT Attention-deficit/hyperactivity disorder (ADHD) is associated with widespread cognitive impairments, but it is not known whether the apparent multiple impairments share etiological roots or separate etiological pathways exist. A better understanding of the etiological pathways is important for the development of targeted interventions and for identification of suitable intermediate phenotypes for molecular genetic investigations. OBJECTIVES To determine, by using a multivariate familial factor analysis approach, whether 1 or more familial factors underlie the slow and variable reaction times, impaired response inhibition, and choice impulsivity associated with ADHD. DESIGN An ADHD and control sibling-pair design. SETTING Belgium, Germany, Ireland, Israel, Spain, Switzerland, and the United Kingdom. PARTICIPANTS A total of 1265 participants, aged 6 to 18 years: 464 probands with ADHD and 456 of their siblings (524 with combined-subtype ADHD), and 345 control participants. MAIN OUTCOME MEASURES Performance on a 4-choice reaction time task, a go/no-go inhibition task, and a choice-delay task. RESULTS The final model consisted of 2 familial factors. The larger factor, reflecting 85% of the familial variance of ADHD, captured 98% to 100% of the familial influences on mean reaction time and reaction time variability. The second, smaller factor, reflecting 13% of the familial variance of ADHD, captured 62% to 82% of the familial influences on commission and omission errors on the go/no-go task. Choice impulsivity was excluded in the final model because of poor fit. CONCLUSIONS The findings suggest the existence of 2 familial pathways to cognitive impairments in ADHD and indicate promising cognitive targets for future molecular genetic investigations. The familial distinction between the 2 cognitive impairments is consistent with recent theoretical models--a developmental model and an arousal-attention model--of 2 separable underlying processes in ADHD. Future research that tests the familial model within a developmental framework may inform developmentally sensitive interventions.


American Journal of Human Genetics | 2007

A Genomewide Screen for Late-Onset Alzheimer Disease in a Genetically Isolated Dutch Population

Fan Liu; Alejandro Arias-Vasquez; Kristel Sleegers; Yurii S. Aulchenko; Manfred Kayser; Pascual Sánchez-Juan; Bing-Jian Feng; Aida M. Bertoli-Avella; John C. van Swieten; Tatiana I. Axenovich; Peter Heutink; Christine Van Broeckhoven; Ben A. Oostra; Cornelia M. van Duijn

Alzheimer disease (AD) is the most common cause of dementia. We conducted a genome screen of 103 patients with late-onset AD who were ascertained as part of the Genetic Research in Isolated Populations (GRIP) program that is conducted in a recently isolated population from the southwestern area of The Netherlands. All patients and their 170 closely related relatives were genotyped using 402 microsatellite markers. Extensive genealogy information was collected, which resulted in an extremely large and complex pedigree of 4,645 members. The pedigree was split into 35 subpedigrees, to reduce the computational burden of linkage analysis. Simulations aiming to evaluate the effect of pedigree splitting on false-positive probabilities showed that a LOD score of 3.64 corresponds to 5% genomewide type I error. Multipoint analysis revealed four significant and one suggestive linkage peaks. The strongest evidence of linkage was found for chromosome 1q21 (heterogeneity LOD [HLOD]=5.20 at marker D1S498). Approximately 30 cM upstream of this locus, we found another peak at 1q25 (HLOD=4.0 at marker D1S218). These two loci are in a previously established linkage region. We also confirmed the AD locus at 10q22-24 (HLOD=4.15 at marker D10S185). There was significant evidence of linkage of AD to chromosome 3q22-24 (HLOD=4.44 at marker D3S1569). For chromosome 11q24-25, there was suggestive evidence of linkage (HLOD=3.29 at marker D11S1320). We next tested for association between cognitive function and 4,173 single-nucleotide polymorphisms in the linked regions in an independent sample consisting of 197 individuals from the GRIP region. After adjusting for multiple testing, we were able to detect significant associations for cognitive function in four of five AD-linked regions, including the new region on chromosome 3q22-24 and regions 1q25, 10q22-24, and 11q25. With use of cognitive function as an endophenotype of AD, our study indicates the that the RGSL2, RALGPS2, and C1orf49 genes are the potential disease-causing genes at 1q25. Our analysis of chromosome 10q22-24 points to the HTR7, MPHOSPH1, and CYP2C cluster. This is the first genomewide screen that showed significant linkage to chromosome 3q23 markers. For this region, our analysis identified the NMNAT3 and CLSTN2 genes. Our findings confirm linkage to chromosome 11q25. We were unable to confirm SORL1; instead, our analysis points to the OPCML and HNT genes.


Schizophrenia Bulletin | 2015

Patterns of Gray Matter Abnormalities in Schizophrenia Based on an International Mega-analysis

Cota Navin Gupta; Vince D. Calhoun; Srinivas Rachakonda; Jiayu Chen; Veena Patel; Jingyu Liu; Judith M. Segall; Barbara Franke; Marcel P. Zwiers; Alejandro Arias-Vasquez; Jan K. Buitelaar; Simon E. Fisher; Guillén Fernández; Theo G.M. van Erp; Steven G. Potkin; Judith M. Ford; Daniel H. Mathalon; Sarah McEwen; Hyo Jong Lee; Bryon A. Mueller; Douglas N. Greve; Ole A. Andreassen; Ingrid Agartz; Randy L. Gollub; Scott R. Sponheim; Stefan Ehrlich; Lei Wang; Godfrey D. Pearlson; David C. Glahn; Emma Sprooten

Analyses of gray matter concentration (GMC) deficits in patients with schizophrenia (Sz) have identified robust changes throughout the cortex. We assessed the relationships between diagnosis, overall symptom severity, and patterns of gray matter in the largest aggregated structural imaging dataset to date. We performed both source-based morphometry (SBM) and voxel-based morphometry (VBM) analyses on GMC images from 784 Sz and 936 controls (Ct) across 23 scanning sites in Europe and the United States. After correcting for age, gender, site, and diagnosis by site interactions, SBM analyses showed 9 patterns of diagnostic differences. They comprised separate cortical, subcortical, and cerebellar regions. Seven patterns showed greater GMC in Ct than Sz, while 2 (brainstem and cerebellum) showed greater GMC for Sz. The greatest GMC deficit was in a single pattern comprising regions in the superior temporal gyrus, inferior frontal gyrus, and medial frontal cortex, which replicated over analyses of data subsets. VBM analyses identified overall cortical GMC loss and one small cluster of increased GMC in Sz, which overlapped with the SBM brainstem component. We found no significant association between the component loadings and symptom severity in either analysis. This mega-analysis confirms that the commonly found GMC loss in Sz in the anterior temporal lobe, insula, and medial frontal lobe form a single, consistent spatial pattern even in such a diverse dataset. The separation of GMC loss into robust, repeatable spatial patterns across multiple datasets paves the way for the application of these methods to identify subtle genetic and clinical cohort effects.


Nature Neuroscience | 2016

Genetic influences on schizophrenia and subcortical brain volumes: large-scale proof of concept.

Barbara Franke; Jason L. Stein; Stephan Ripke; Verneri Anttila; Derrek P. Hibar; van Hulzen Kje.; Alejandro Arias-Vasquez; Jordan W. Smoller; Thomas E. Nichols; Michael C. Neale; Andrew M. McIntosh; Phil H. Lee; Francis J. McMahon; Andreas Meyer-Lindenberg; Manuel Mattheisen; Ole A. Andreassen; Oliver Gruber; Perminder S. Sachdev; Roberto Roiz-Santiañez; Andrew J. Saykin; Stefan Ehrlich; Karen A. Mather; Jessica A. Turner; Emanuel Schwarz; Anbupalam Thalamuthu; Yin Yao Shugart; Yvonne Y.W. Ho; Nicholas G. Martin; Margaret J. Wright; Michael Conlon O'Donovan

Schizophrenia is a devastating psychiatric illness with high heritability. Brain structure and function differ, on average, between people with schizophrenia and healthy individuals. As common genetic associations are emerging for both schizophrenia and brain imaging phenotypes, we can now use genome-wide data to investigate genetic overlap. Here we integrated results from common variant studies of schizophrenia (33,636 cases, 43,008 controls) and volumes of several (mainly subcortical) brain structures (11,840 subjects). We did not find evidence of genetic overlap between schizophrenia risk and subcortical volume measures either at the level of common variant genetic architecture or for single genetic markers. These results provide a proof of concept (albeit based on a limited set of structural brain measures) and define a roadmap for future studies investigating the genetic covariance between structural or functional brain phenotypes and risk for psychiatric disorders.


Nature Genetics | 2011

Common variants in DGKK are strongly associated with risk of hypospadias

Loes F.M. van der Zanden; Iris van Rooij; W.F.J. Feitz; Jo Knight; A. Rogier T. Donders; Kirsten Y. Renkema; Ernie M.H.F. Bongers; Sita H. Vermeulen; Lambertus A. Kiemeney; Joris A. Veltman; Alejandro Arias-Vasquez; Xufeng Zhang; Ellen Markljung; Liang Qiao; Laurence S. Baskin; Agneta Nordenskjöld; Nel Roeleveld; Barbara Franke; N.V.A.M. Knoers

Hypospadias is a common congenital malformation of the male external genitalia. We performed a genome-wide association study using pooled DNA from 436 individuals with hypospadias (cases) and 494 controls of European descent and selected the highest ranked SNPs for individual genotyping in the discovery sample, an additional Dutch sample of 133 cases and their parents, and a Swedish series of 266 cases and 402 controls. Individual genotyping of two SNPs (rs1934179 and rs7063116) in DGKK, encoding diacylglycerol kinase κ, produced compelling evidence for association with hypospadias in the discovery sample (allele-specific odds ratio (OR) = 2.5, P = 2.5 × 10−11 and OR = 2.3, P = 2.9 × 10−9, respectively) and in the Dutch (OR = 3.9, P = 2.4 × 10−5 and OR = 3.8, P = 3.4 × 10−5) and Swedish (OR = 2.5, P = 2.6 × 10−8 and OR = 2.2, P = 2.7 × 10−6) replication samples. Expression studies showed expression of DGKK in preputial tissue of cases and controls, which was lower in carriers of the risk allele of rs1934179 (P = 0.047). We propose DGKK as a major risk gene for hypospadias.


American Journal of Human Genetics | 2008

Neuropsychological Endophenotype Approach to Genome-wide Linkage Analysis Identifies Susceptibility Loci for ADHD on 2q21.1 and 13q12.11

Nanda Rommelse; Alejandro Arias-Vasquez; Marieke E. Altink; Cathelijne J. M. Buschgens; Ellen A. Fliers; Philip Asherson; Stephen V. Faraone; Jan K. Buitelaar; Joseph A. Sergeant; Jaap Oosterlaan; Barbara Franke

ADHD linkage findings have not all been consistently replicated, suggesting that other approaches to linkage analysis in ADHD might be necessary, such as the use of (quantitative) endophenotypes (heritable traits associated with an increased risk for ADHD). Genome-wide linkage analyses were performed in the Dutch subsample of the International Multi-Center ADHD Genetics (IMAGE) study comprising 238 DSM-IV combined-type ADHD probands and their 112 affected and 195 nonaffected siblings. Eight candidate neuropsychological ADHD endophenotypes with heritabilities > 0.2 were used as quantitative traits. In addition, an overall component score of neuropsychological functioning was used. A total of 5407 autosomal single-nucleotide polymorphisms (SNPs) were used to run multipoint regression-based linkage analyses. Two significant genome-wide linkage signals were found, one for Motor Timing on chromosome 2q21.1 (LOD score: 3.944) and one for Digit Span on 13q12.11 (LOD score: 3.959). Ten suggestive linkage signals were found (LOD scores > or = 2) on chromosomes 2p, 2q, 3p, 4q, 8q, 12p, 12q, 14q, and 17q. The suggestive linkage signal for the component score that was found at 2q14.3 (LOD score: 2.878) overlapped with the region significantly linked to Motor Timing. Endophenotype approaches may increase power to detect susceptibility loci in ADHD and possibly in other complex disorders.


Psychological Medicine | 2011

The relationship between ADHD and key cognitive phenotypes is not mediated by shared familial effects with IQ

Alexis C. Wood; Fruhling Rijsdijk; Katherine A. Johnson; Penelope Andreou; Bjoern Albrecht; Alejandro Arias-Vasquez; Jan K. Buitelaar; Gráinne McLoughlin; Nanda Rommelse; Joseph A. Sergeant; Edmund Sonuga-Barke; Henrik Uebel; J. J. van der Meere; Tobias Banaschewski; Michael Gill; Iris Manor; Ana Miranda; Fernando Mulas; Robert D. Oades; Herbert Roeyers; Aribert Rothenberger; Hans-Christoph Steinhausen; Stephen V. Faraone; Philip Asherson; Jonna Kuntsi

BACKGROUND Twin and sibling studies have identified specific cognitive phenotypes that may mediate the association between genes and the clinical symptoms of attention deficit hyperactivity disorder (ADHD). ADHD is also associated with lower IQ scores. We aimed to investigate whether the familial association between measures of cognitive performance and the clinical diagnosis of ADHD is mediated through shared familial influences with IQ. METHOD Multivariate familial models were run on data from 1265 individuals aged 6-18 years, comprising 920 participants from ADHD sibling pairs and 345 control participants. Cognitive assessments included a four-choice reaction time (RT) task, a go/no-go task, a choice-delay task and an IQ assessment. The analyses focused on the cognitive variables of mean RT (MRT), RT variability (RTV), commission errors (CE), omission errors (OE) and choice impulsivity (CI). RESULTS Significant familial association (rF) was confirmed between cognitive performance and both ADHD (rF=0.41-0.71) and IQ (rF=-0.25 to -0.49). The association between ADHD and cognitive performance was largely independent (80-87%) of any contribution from etiological factors shared with IQ. The exception was for CI, where 49% of the overlap could be accounted for by the familial variance underlying IQ. CONCLUSIONS The aetiological factors underlying lower IQ in ADHD seem to be distinct from those between ADHD and RT/error measures. This suggests that lower IQ does not account for the key cognitive impairments observed in ADHD. The results have implications for molecular genetic studies designed to identify genes involved in ADHD.


Journal of the American Academy of Child and Adolescent Psychiatry | 2013

Candidate Genetic Pathways for Attention-Deficit/Hyperactivity Disorder (ADHD) Show Association to Hyperactive/Impulsive Symptoms in Children With ADHD

Janita Bralten; Barbara Franke; Irwin D. Waldman; Nanda Rommelse; Catharina A. Hartman; Philip Asherson; Tobias Banaschewski; Richard P. Ebstein; Michael Gill; Ana Miranda; Robert D. Oades; Herbert Roeyers; Aribert Rothenberger; Joseph A. Sergeant; Jaap Oosterlaan; Edmund Sonuga-Barke; Hans-Christoph Steinhausen; Stephen V. Faraone; Jan Buitelaar; Alejandro Arias-Vasquez

OBJECTIVE Because multiple genes with small effect sizes are assumed to play a role in attention-deficit/hyperactivity disorder (ADHD) etiology, considering multiple variants within the same analysis likely increases the total explained phenotypic variance, thereby boosting the power of genetic studies. This study investigated whether pathway-based analysis could bring scientists closer to unraveling the biology of ADHD. METHOD The pathway was described as a predefined gene selection based on a well-established database or literature data. Common genetic variants in pathways involved in dopamine/norepinephrine and serotonin neurotransmission and genes involved in neuritic outgrowth were investigated in cases from the International Multicentre ADHD Genetics (IMAGE) study. Multivariable analysis was performed to combine the effects of single genetic variants within the pathway genes. Phenotypes were DSM-IV symptom counts for inattention and hyperactivity/impulsivity (n = 871) and symptom severity measured with the Conners Parent (n = 930) and Teacher (n = 916) Rating Scales. RESULTS Summing genetic effects of common genetic variants within the pathways showed a significant association with hyperactive/impulsive symptoms ((p)empirical = .007) but not with inattentive symptoms ((p)empirical = .73). Analysis of parent-rated Conners hyperactive/impulsive symptom scores validated this result ((p)empirical = .0018). Teacher-rated Conners scores were not associated. Post hoc analyses showed a significant contribution of all pathways to the hyperactive/impulsive symptom domain (dopamine/norepinephrine, (p)empirical = .0004; serotonin, (p)empirical = .0149; neuritic outgrowth, (p)empirical = .0452). CONCLUSION The present analysis shows an association between common variants in 3 genetic pathways and the hyperactive/impulsive component of ADHD. This study demonstrates that pathway-based association analyses, using quantitative measurements of ADHD symptom domains, can increase the power of genetic analyses to identify biological risk factors involved in this disorder.


Nature Neuroscience | 2016

Genetic influences on schizophrenia and subcortical brain volumes

Barbara Franke; Jason L. Stein; Stephan Ripke; Verneri Anttila; Derrek P. Hibar; Kimm J. E. van Hulzen; Alejandro Arias-Vasquez; Jordan W. Smoller; Thomas E. Nichols; Michael C. Neale; Andrew M. McIntosh; Phil H. Lee; Francis J. McMahon; Andreas Meyer-Lindenberg; Manuel Mattheisen; Ole A. Andreassen; Oliver Gruber; Perminder S. Sachdev; Roberto Roiz-Santiañez; Andrew J. Saykin; Stefan Ehrlich; Karen A. Mather; Jessica A. Turner; Emanuel Schwarz; Anbupalam Thalamuthu; Yin Yao; Yvonne Y.W. Ho; Nicholas G. Martin; Margaret J. Wright; Michael Conlon O'Donovan

Schizophrenia is a devastating psychiatric illness with high heritability. Brain structure and function differ, on average, between people with schizophrenia and healthy individuals. As common genetic associations are emerging for both schizophrenia and brain imaging phenotypes, we can now use genome-wide data to investigate genetic overlap. Here we integrated results from common variant studies of schizophrenia (33,636 cases, 43,008 controls) and volumes of several (mainly subcortical) brain structures (11,840 subjects). We did not find evidence of genetic overlap between schizophrenia risk and subcortical volume measures either at the level of common variant genetic architecture or for single genetic markers. These results provide a proof of concept (albeit based on a limited set of structural brain measures) and define a roadmap for future studies investigating the genetic covariance between structural or functional brain phenotypes and risk for psychiatric disorders.


JAMA Psychiatry | 2015

Developmentally Stable Whole-Brain Volume Reductions and Developmentally Sensitive Caudate and Putamen Volume Alterations in Those With Attention-Deficit/Hyperactivity Disorder and Their Unaffected Siblings

Corina U. Greven; Janita Bralten; Maarten Mennes; Laurence O’Dwyer; Kimm J. E. van Hulzen; Nanda Rommelse; Lizanne Schweren; Pieter J. Hoekstra; Catharina A. Hartman; Dirk J. Heslenfeld; Jaap Oosterlaan; Stephen V. Faraone; Barbara Franke; Marcel P. Zwiers; Alejandro Arias-Vasquez; Jan K. Buitelaar

IMPORTANCE Attention-deficit/hyperactivity disorder (ADHD) is a heritable neurodevelopmental disorder. It has been linked to reductions in total brain volume and subcortical abnormalities. However, owing to heterogeneity within and between studies and limited sample sizes, findings on the neuroanatomical substrates of ADHD have shown considerable variability. Moreover, it remains unclear whether neuroanatomical alterations linked to ADHD are also present in the unaffected siblings of those with ADHD. OBJECTIVE To examine whether ADHD is linked to alterations in whole-brain and subcortical volumes and to study familial underpinnings of brain volumetric alterations in ADHD. DESIGN, SETTING, AND PARTICIPANTS In this cross-sectional study, we included participants from the large and carefully phenotyped Dutch NeuroIMAGE sample (collected from September 2009-December 2012) consisting of 307 participants with ADHD, 169 of their unaffected siblings, and 196 typically developing control individuals (mean age, 17.21 years; age range, 8-30 years). MAIN OUTCOMES AND MEASURES Whole-brain volumes (total brain and gray and white matter volumes) and volumes of subcortical regions (nucleus accumbens, amygdala, caudate nucleus, globus pallidus, hippocampus, putamen, thalamus, and brainstem) were derived from structural magnetic resonance imaging scans using automated tissue segmentation. RESULTS Regression analyses revealed that relative to control individuals, participants with ADHD had a 2.5% smaller total brain (β = -31.92; 95% CI, -52.69 to -11.16; P = .0027) and a 3% smaller total gray matter volume (β = -22.51; 95% CI, -35.07 to -9.96; P = .0005), while total white matter volume was unaltered (β = -10.10; 95% CI, -20.73 to 0.53; P = .06). Unaffected siblings had total brain and total gray matter volumes intermediate to participants with ADHD and control individuals. Significant age-by-diagnosis interactions showed that older age was linked to smaller caudate (P < .001) and putamen (P = .01) volumes (both corrected for total brain volume) in control individuals, whereas age was unrelated to these volumes in participants with ADHD and their unaffected siblings. Attention-deficit/hyperactivity disorder was not significantly related to the other subcortical volumes. CONCLUSIONS AND RELEVANCE Global differences in gray matter volume may be due to alterations in the general mechanisms underlying normal brain development in ADHD. The age-by-diagnosis interaction in the caudate and putamen supports the relevance of different brain developmental trajectories in participants with ADHD vs control individuals and supports the role of subcortical basal ganglia alterations in the pathophysiology of ADHD. Alterations in total gray matter and caudate and putamen volumes in unaffected siblings suggest that these volumes are linked to familial risk for ADHD.

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Barbara Franke

Radboud University Nijmegen

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Stephen V. Faraone

State University of New York Upstate Medical University

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Jan K. Buitelaar

Radboud University Nijmegen

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Nanda Rommelse

Radboud University Nijmegen

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Marcel P. Zwiers

Radboud University Nijmegen

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