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Featured researches published by V. Arolt.


Molecular Psychiatry | 2009

Genome-wide association for major depressive disorder: a possible role for the presynaptic protein piccolo

Patrick F. Sullivan; E.J.C. de Geus; Gonneke Willemsen; Michael R. James; J.H. Smit; T. Zandbelt; V. Arolt; Bernhard T. Baune; D. H. R. Blackwood; Sven Cichon; William L. Coventry; Katharina Domschke; Anne Farmer; Maurizio Fava; S. D. Gordon; Q. He; A. C. Heath; Peter Heutink; Florian Holsboer; Witte J. G. Hoogendijk; J.J. Hottenga; Yi Hu; Martin A. Kohli; D. Y. Lin; Susanne Lucae; Donald J. MacIntyre; W. Maier; K. A. McGhee; Peter McGuffin; G. W. Montgomery

Major depressive disorder (MDD) is a common complex trait with enormous public health significance. As part of the Genetic Association Information Network initiative of the US Foundation for the National Institutes of Health, we conducted a genome-wide association study of 435 291 single nucleotide polymorphisms (SNPs) genotyped in 1738 MDD cases and 1802 controls selected to be at low liability for MDD. Of the top 200, 11 signals localized to a 167 kb region overlapping the gene piccolo (PCLO, whose protein product localizes to the cytomatrix of the presynaptic active zone and is important in monoaminergic neurotransmission in the brain) with P-values of 7.7 × 10−7 for rs2715148 and 1.2 × 10−6 for rs2522833. We undertook replication of SNPs in this region in five independent samples (6079 MDD independent cases and 5893 controls) but no SNP exceeded the replication significance threshold when all replication samples were analyzed together. However, there was heterogeneity in the replication samples, and secondary analysis of the original sample with the sample of greatest similarity yielded P=6.4 × 10−8 for the nonsynonymous SNP rs2522833 that gives rise to a serine to alanine substitution near a C2 calcium-binding domain of the PCLO protein. With the integrated replication effort, we present a specific hypothesis for further studies.


Molecular Psychiatry | 2001

Increased S100B blood levels in unmedicated and treated schizophrenic patients are correlated with negative symptomatology.

Matthias Rothermundt; U Missler; V. Arolt; Marion Peters; J Leadbeater; M Wiesmann; S Rudolf; K P Wandinger; Holger Kirchner

S100B, a calcium-binding protein produced by astroglial cells, is a marker of astroglial cellular integrity. It has been shown to be increased in acute brain damage and neurodegeneration. A recent study showed increased S100B levels in medicated acutely psychotic patients with schizophrenia. The study presented here included 26 drug-free patients with acute schizophrenia and 26 matched healthy controls. S100B blood concentrations were determined using a quantitative immunoassay upon admission and after 6 weeks of neuroleptic treatment. The PANSS was used to investigate psychopathology. Unmedicated schizophrenic patients showed significantly increased S100B levels compared to matched healthy controls. After 6 weeks of treatment, 11 patients showed normal S100B levels while in 15 patients the levels remained increased. These patients showed significantly higher PANSS negative scores upon admission and after 6 weeks of treatment. Schizophrenic patients display a loss of astroglial integrity which is not caused by neuroleptic medication. Continuously increased S100B levels are associated with negative symptomatology.


Molecular Psychiatry | 2017

Cortical abnormalities in adults and adolescents with major depression based on brain scans from 20 cohorts worldwide in the ENIGMA Major Depressive Disorder Working Group

Lianne Schmaal; D. P. Hibar; Philipp G. Sämann; Geoffrey B. Hall; Bernhard T. Baune; Neda Jahanshad; J W Cheung; T G M van Erp; Daniel Bos; M. A. Ikram; Meike W. Vernooij; Wiro J. Niessen; Henning Tiemeier; A Hofman; K. Wittfeld; H. J. Grabe; Deborah Janowitz; R. Bülow; M. Selonke; Henry Völzke; Dominik Grotegerd; Udo Dannlowski; V. Arolt; Nils Opel; W Heindel; H Kugel; D. Hoehn; Michael Czisch; Baptiste Couvy-Duchesne; Miguel E. Rentería

The neuro-anatomical substrates of major depressive disorder (MDD) are still not well understood, despite many neuroimaging studies over the past few decades. Here we present the largest ever worldwide study by the ENIGMA (Enhancing Neuro Imaging Genetics through Meta-Analysis) Major Depressive Disorder Working Group on cortical structural alterations in MDD. Structural T1-weighted brain magnetic resonance imaging (MRI) scans from 2148 MDD patients and 7957 healthy controls were analysed with harmonized protocols at 20 sites around the world. To detect consistent effects of MDD and its modulators on cortical thickness and surface area estimates derived from MRI, statistical effects from sites were meta-analysed separately for adults and adolescents. Adults with MDD had thinner cortical gray matter than controls in the orbitofrontal cortex (OFC), anterior and posterior cingulate, insula and temporal lobes (Cohen’s d effect sizes: −0.10 to −0.14). These effects were most pronounced in first episode and adult-onset patients (>21 years). Compared to matched controls, adolescents with MDD had lower total surface area (but no differences in cortical thickness) and regional reductions in frontal regions (medial OFC and superior frontal gyrus) and primary and higher-order visual, somatosensory and motor areas (d: −0.26 to −0.57). The strongest effects were found in recurrent adolescent patients. This highly powered global effort to identify consistent brain abnormalities showed widespread cortical alterations in MDD patients as compared to controls and suggests that MDD may impact brain structure in a highly dynamic way, with different patterns of alterations at different stages of life.


Translational Psychiatry | 2012

The relationship between subtypes of depression and cardiovascular disease: a systematic review of biological models

Bernhard T. Baune; A Gilmour; Heike Wersching; Walter Heindel; V. Arolt; Klaus Berger

A compelling association has been observed between cardiovascular disease (CVD) and depression, suggesting individuals with depression to be at significantly higher risk for CVD and CVD-related mortality. Systemic immune activation, hypothalamic–pituitary–adrenal (HPA) axis hyperactivity, arterial stiffness and endothelial dysfunction have been frequently implicated in this relationship. Although a differential epidemiological association between CVD and depression subtypes is evident, it has not been determined if this indicates subtype specific biological mechanisms. A comprehensive systematic literature search was conducted using PubMed and PsycINFO databases yielding 147 articles for this review. A complex pattern of systemic immune activation, endothelial dysfunction and HPA axis hyperactivity is suggestive of the biological relationship between CVD and depression subtypes. The findings of this review suggest that diagnostic subtypes rather than a unifying model of depression should be considered when investigating the bidirectional biological relationship between CVD and depression. The suggested model of a subtype-specific biological relationship between depression and CVDs has implications for future research and possibly for diagnostic and therapeutic processes.


Translational Psychiatry | 2015

The International SSRI Pharmacogenomics Consortium (ISPC): a genome-wide association study of antidepressant treatment response

Joanna M. Biernacka; Greg D. Jenkins; Ryan Whaley; Poulami Barman; Anthony Batzler; Russ B. Altman; V. Arolt; Jürgen Brockmöller; C H Chen; Katharina Domschke; Daniel K. Hall-Flavin; Chen-Jee Hong; Ari Illi; Yuan Ji; Olli Kampman; Toshihiko Kinoshita; Esa Leinonen; Y J Liou; Taisei Mushiroda; Shinpei Nonen; Michelle K. Skime; L. Wang; Bernhard T. Baune; Masaki Kato; Yu-Li Liu; V Praphanphoj; Julia C. Stingl; Shih Jen Tsai; Michiaki Kubo; Teri E. Klein

Response to treatment with selective serotonin reuptake inhibitors (SSRIs) varies considerably between patients. The International SSRI Pharmacogenomics Consortium (ISPC) was formed with the primary goal of identifying genetic variation that may contribute to response to SSRI treatment of major depressive disorder. A genome-wide association study of 4-week treatment outcomes, measured using the 17-item Hamilton Rating Scale for Depression (HRSD-17), was performed using data from 865 subjects from seven sites. The primary outcomes were percent change in HRSD-17 score and response, defined as at least 50% reduction in HRSD-17. Data from two prior studies, the Pharmacogenomics Research Network Antidepressant Medication Pharmacogenomics Study (PGRN-AMPS) and the Sequenced Treatment Alternatives to Relieve Depression (STAR*D) study, were used for replication, and a meta-analysis of the three studies was performed (N=2394). Although many top association signals in the ISPC analysis map to interesting candidate genes, none were significant at the genome-wide level and the associations were not replicated using PGRN-AMPS and STAR*D data. Top association results in the meta-analysis of response included single-nucleotide polymorphisms (SNPs) in the HPRTP4 (hypoxanthine phosphoribosyltransferase pseudogene 4)/VSTM5 (V-set and transmembrane domain containing 5) region, which approached genome-wide significance (P=5.03E−08) and SNPs 5’ upstream of the neuregulin-1 gene, NRG1 (P=1.20E−06). NRG1 is involved in many aspects of brain development, including neuronal maturation and variations in this gene have been shown to be associated with increased risk for mental disorders, particularly schizophrenia. Replication and functional studies of these findings are warranted.


Molecular Psychiatry | 2018

Collaborative meta-analysis finds no evidence of a strong interaction between stress and 5-HTTLPR genotype contributing to the development of depression

Robert Culverhouse; Nancy L. Saccone; Amy C. Horton; Yinjiao Ma; Kaarin J. Anstey; Tobias Banaschewski; Margit Burmeister; Sarah Cohen-Woods; Bruno Etain; Helen L. Fisher; Noreen Goldman; Sébastien Guillaume; John Horwood; Gabriella Juhasz; Kathryn J. Lester; Laura Mandelli; Christel M. Middeldorp; E. Olié; Sandra Villafuerte; Tracy Air; Ricardo Araya; Lucy Bowes; Richard Burns; Enda M. Byrne; C. Coffey; William L. Coventry; K. A. B. Gawronski; Dana A. Glei; Alex Hatzimanolis; Jouke-Jan Hottenga

The hypothesis that the S allele of the 5-HTTLPR serotonin transporter promoter region is associated with increased risk of depression, but only in individuals exposed to stressful situations, has generated much interest, research and controversy since first proposed in 2003. Multiple meta-analyses combining results from heterogeneous analyses have not settled the issue. To determine the magnitude of the interaction and the conditions under which it might be observed, we performed new analyses on 31 data sets containing 38 802 European ancestry subjects genotyped for 5-HTTLPR and assessed for depression and childhood maltreatment or other stressful life events, and meta-analysed the results. Analyses targeted two stressors (narrow, broad) and two depression outcomes (current, lifetime). All groups that published on this topic prior to the initiation of our study and met the assessment and sample size criteria were invited to participate. Additional groups, identified by consortium members or self-identified in response to our protocol (published prior to the start of analysis) with qualifying unpublished data, were also invited to participate. A uniform data analysis script implementing the protocol was executed by each of the consortium members. Our findings do not support the interaction hypothesis. We found no subgroups or variable definitions for which an interaction between stress and 5-HTTLPR genotype was statistically significant. In contrast, our findings for the main effects of life stressors (strong risk factor) and 5-HTTLPR genotype (no impact on risk) are strikingly consistent across our contributing studies, the original study reporting the interaction and subsequent meta-analyses. Our conclusion is that if an interaction exists in which the S allele of 5-HTTLPR increases risk of depression only in stressed individuals, then it is not broadly generalisable, but must be of modest effect size and only observable in limited situations.


Neuropsychobiology | 2002

The Influence of Typical and Atypical Neuroleptic Drugs in the Production of Interleukin-2 and Interferon-Gamma in vitro

Sebastian Rudolf; Marion Peters; Matthias Rothermundt; V. Arolt; Holger Kirchner

Alterations of cytokine levels represent the most consistent finding from studies concerning the involvement of the immune system in the etiology of schizophrenia. These results have been discussed controversially due to the potential influence of drug treatment on cytokine production and on the experimental procedures used for cytokine measurement. In the present study, the influences of typical and atypical neuroleptic drugs (haloperidol and clozapine) as well as a tricyclic antidepressive drug (amitriptyline) on cytokine levels (IL-2 and IFN-γ) were examined in vitro in a whole blood assay under various conditions of phytohemagglutinin (PHA) stimulation and drug incubation. Stimulation was enhanced by haloperidol and clozapine, but not by the antidepressant, meaning that the results of decreased cytokine levels seen in earlier studies in schizophrenic patients cannot be explained through drug influences alone. Furthermore, our findings allow us to conclude that, in contrast to the antidepressant drug, the typical and atypical neuroleptic drugs seem to influence the examined cytokine levels.


Molecular Psychiatry | 2017

The PHF21B gene is associated with major depression and modulates the stress response

Ma-Li Wong; Mauricio Arcos-Burgos; S. Liu; Jorge I. Vélez; Chenglong Yu; Bernhard T. Baune; Magdalene C. Jawahar; V. Arolt; Udo Dannlowski; Aaron Chuah; Gavin A. Huttley; R. Fogarty; Martin D. Lewis; Stefan R. Bornstein; Julio Licinio

Major depressive disorder (MDD) affects around 350 million people worldwide; however, the underlying genetic basis remains largely unknown. In this study, we took into account that MDD is a gene-environment disorder, in which stress is a critical component, and used whole-genome screening of functional variants to investigate the ‘missing heritability’ in MDD. Genome-wide association studies (GWAS) using single- and multi-locus linear mixed-effect models were performed in a Los Angeles Mexican-American cohort (196 controls, 203 MDD) and in a replication European-ancestry cohort (499 controls, 473 MDD). Our analyses took into consideration the stress levels in the control populations. The Mexican-American controls, comprised primarily of recent immigrants, had high levels of stress due to acculturation issues and the European-ancestry controls with high stress levels were given higher weights in our analysis. We identified 44 common and rare functional variants associated with mild to moderate MDD in the Mexican-American cohort (genome-wide false discovery rate, FDR, <0.05), and their pathway analysis revealed that the three top overrepresented Gene Ontology (GO) processes were innate immune response, glutamate receptor signaling and detection of chemical stimulus in smell sensory perception. Rare variant analysis replicated the association of the PHF21B gene in the ethnically unrelated European-ancestry cohort. The TRPM2 gene, previously implicated in mood disorders, may also be considered replicated by our analyses. Whole-genome sequencing analyses of a subset of the cohorts revealed that European-ancestry individuals have a significantly reduced (50%) number of single nucleotide variants compared with Mexican-American individuals, and for this reason the role of rare variants may vary across populations. PHF21b variants contribute significantly to differences in the levels of expression of this gene in several brain areas, including the hippocampus. Furthermore, using an animal model of stress, we found that Phf21b hippocampal gene expression is significantly decreased in animals resilient to chronic restraint stress when compared with non-chronically stressed animals. Together, our results reveal that including stress level data enables the identification of novel rare functional variants associated with MDD.


Molecular Psychiatry | 2002

Immunological research in clinical psychiatry: report on the consensus debate during the 7th Expert Meeting on Psychiatry and Immunology.

V. Arolt; Matthias Rothermundt; Marion Peters; B Leonard

There is convincing evidence that cytokines are involved in the physiology and pathophysiology of brain function and interact with different neurotransmitter and neuroendocrine pathways. The possible involvement of the immune system in the neurobiological mechanisms that underlie psychiatric disorders has attracted increasing attention in recent years. Thus in the last decade, numerous clinical studies have demonstrated dysregulated immune functions in patients with psychiatric disorders. Such findings formed the basis of the 7th Expert Meeting on Psychiatry and Immunology in Muenster, Germany, where a consensus symposium was held to consider the strengths and weaknesses of current research in psychoneuroimmunology. Following a general overview of the field, the following topics were discussed: (1) methodological problems in laboratory procedures and recruitment of clinical samples; (2) the importance of pre-clinical research and animal models in psychiatric research; (3) the problem of statistical vs biological relevance. It was concluded that, despite a fruitful proliferation of research activities throughout the last decade, the continuous elaboration of methodological standards including the implementation of hypothesis-driven research represents a task that is likely to prove crucial for the future development of immunology research in clinical psychiatry.


Molecular Psychiatry | 2017

Prefrontal gray matter volume mediates genetic risks for obesity

Nils Opel; Ronny Redlich; Claas Kaehler; Dominik Grotegerd; Katharina Dohm; Walter Heindel; Harald Kugel; Anbupalam Thalamuthu; N Koutsouleris; V. Arolt; Anja Teuber; Heike Wersching; Bernhard T. Baune; Klaus Berger; Udo Dannlowski

Genetic and neuroimaging research has identified neurobiological correlates of obesity. However, evidence for an integrated model of genetic risk and brain structural alterations in the pathophysiology of obesity is still absent. Here we investigated the relationship between polygenic risk for obesity, gray matter structure and body mass index (BMI) by the use of univariate and multivariate analyses in two large, independent cohorts (n=330 and n=347). Higher BMI and higher polygenic risk for obesity were significantly associated with medial prefrontal gray matter decrease, and prefrontal gray matter was further shown to significantly mediate the effect of polygenic risk for obesity on BMI in both samples. Building on this, the successful individualized prediction of BMI by means of multivariate pattern classification algorithms trained on whole-brain imaging data and external validations in the second cohort points to potential clinical applications of this imaging trait marker.

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Andreas Reif

Goethe University Frankfurt

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