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1.
Nat Hum Behav ; 8(4): 779-793, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38182882

ABSTRACT

Despite its crucial role in the regulation of vital metabolic and neurological functions, the genetic architecture of the hypothalamus remains unknown. Here we conducted multivariate genome-wide association studies (GWAS) using hypothalamic imaging data from 32,956 individuals to uncover the genetic underpinnings of the hypothalamus and its involvement in neuropsychiatric traits. There were 23 significant loci associated with the whole hypothalamus and its subunits, with functional enrichment for genes involved in intracellular trafficking systems and metabolic processes of steroid-related compounds. The hypothalamus exhibited substantial genetic associations with limbic system structures and neuropsychiatric traits including chronotype, risky behaviour, cognition, satiety and sympathetic-parasympathetic activity. The strongest signal in the primary GWAS, the ADAMTS8 locus, was replicated in three independent datasets (N = 1,685-4,321) and was strengthened after meta-analysis. Exome-wide association analyses added evidence to the association for ADAMTS8, and Mendelian randomization showed lower ADAMTS8 expression with larger hypothalamic volumes. The current study advances our understanding of complex structure-function relationships of the hypothalamus and provides insights into the molecular mechanisms that underlie hypothalamic formation.


Subject(s)
Genome-Wide Association Study , Hypothalamus , Humans , Hypothalamus/metabolism , Hypothalamus/diagnostic imaging , Male , Female , Adult , Mental Disorders/genetics , ADAMTS Proteins/genetics , Middle Aged , Mendelian Randomization Analysis
2.
medRxiv ; 2024 Feb 01.
Article in English | MEDLINE | ID: mdl-37986844

ABSTRACT

While numerous studies over the last decade have highlighted the important influence of environmental factors on mental health, globally applicable data on physical surroundings are still limited. Access to such data and the possibility to link them to epidemiological studies is critical to unlocking the relationship of environment, brain and behaviour and promoting positive future mental health outcomes. The Adolescent Brain Cognitive Development (ABCD) Study is the largest ongoing longitudinal and observational study exploring brain development and child health among children from 21 sites across the United States. Here we describe the linking of the ABCD study data with satellite-based "Urban-Satellite" (UrbanSat) variables consisting of 11 satellite-data derived environmental indicators associated with each subject's residential address at their baseline visit, including land cover and land use, nighttime lights, and population characteristics. We present these UrbanSat variables and provide a review of the current literature that links environmental indicators with mental health, as well as key aspects that must be considered when using satellite data for mental health research. We also highlight and discuss significant links of the satellite data variables to the default mode network clustering coefficient and cognition. This comprehensive dataset provides the foundation for large-scale environmental epidemiology research.

3.
Mol Psychiatry ; 28(8): 3171-3181, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37580524

ABSTRACT

Most mental disorders have a typical onset between 12 and 25 years of age, highlighting the importance of this period for the pathogenesis, diagnosis, and treatment of mental ill-health. This perspective addresses interactions between risk and protective factors and brain development as key pillars accounting for the emergence of psychopathology in youth. Moreover, we propose that novel approaches towards early diagnosis and interventions are required that reflect the evolution of emerging psychopathology, the importance of novel service models, and knowledge exchange between science and practitioners. Taken together, we propose a transformative early intervention paradigm for research and clinical care that could significantly enhance mental health in young people and initiate a shift towards the prevention of severe mental disorders.


Subject(s)
Mental Disorders , Mental Health , Humans , Adolescent , Mental Disorders/therapy , Mental Disorders/diagnosis , Psychopathology
4.
Addict Biol ; 24(4): 787-801, 2019 07.
Article in English | MEDLINE | ID: mdl-29847018

ABSTRACT

Abnormalities across different domains of neuropsychological functioning may constitute a risk factor for heavy drinking during adolescence and for developing alcohol use disorders later in life. However, the exact nature of such multi-domain risk profiles is unclear, and it is further unclear whether these risk profiles differ between genders. We combined longitudinal and cross-sectional analyses on the large IMAGEN sample (N ≈ 1000) to predict heavy drinking at age 19 from gray matter volume as well as from psychosocial data at age 14 and 19-for males and females separately. Heavy drinking was associated with reduced gray matter volume in 19-year-olds' bilateral ACC, MPFC, thalamus, middle, medial and superior OFC as well as left amygdala and anterior insula and right inferior OFC. Notably, this lower gray matter volume associated with heavy drinking was stronger in females than in males. In both genders, we observed that impulsivity and facets of novelty seeking at the age of 14 and 19, as well as hopelessness at the age of 14, are risk factors for heavy drinking at the age of 19. Stressful life events with internal (but not external) locus of control were associated with heavy drinking only at age 19. Personality and stress assessment in adolescents may help to better target counseling and prevention programs. This might reduce heavy drinking in adolescents and hence reduce the risk of early brain atrophy, especially in females. In turn, this could additionally reduce the risk of developing alcohol use disorders later in adulthood.


Subject(s)
Alcohol-Related Disorders/diagnostic imaging , Brain/diagnostic imaging , Gray Matter/diagnostic imaging , Adolescent , Alcohol-Related Disorders/epidemiology , Alcohol-Related Disorders/psychology , Alcoholic Intoxication/diagnostic imaging , Alcoholic Intoxication/epidemiology , Alcoholic Intoxication/psychology , Amygdala/diagnostic imaging , Amygdala/pathology , Binge Drinking/diagnostic imaging , Binge Drinking/epidemiology , Binge Drinking/psychology , Brain/pathology , Cerebral Cortex/diagnostic imaging , Cerebral Cortex/pathology , Exploratory Behavior , Female , Gray Matter/pathology , Gyrus Cinguli/diagnostic imaging , Gyrus Cinguli/pathology , Hope , Humans , Impulsive Behavior , Internal-External Control , Magnetic Resonance Imaging , Male , Organ Size , Personality , Prefrontal Cortex/diagnostic imaging , Prefrontal Cortex/pathology , Risk , Risk Factors , Sex Factors , Stress, Psychological/psychology , Thalamus/diagnostic imaging , Thalamus/pathology , Underage Drinking , Young Adult
5.
Neuropsychopharmacology ; 38(9): 1636-47, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23459588

ABSTRACT

The α-Ca(2+)/calmodulin-dependent protein kinase II (αCaMKII) is a crucial enzyme controlling plasticity in the brain. The autophosphorylation of αCaMKII works as a 'molecular memory' for a transient calcium activation, thereby accelerating learning. We investigated the role of αCaMKII autophosphorylation in the establishment of alcohol drinking as an addiction-related behavior in mice. We found that alcohol drinking was initially diminished in αCaMKII autophosphorylation-deficient αCaMKII(T286A) mice, but could be established at wild-type level after repeated withdrawals. The locomotor activating effects of a low-dose alcohol (2 g/kg) were absent in αCaMKII(T286A) mice, whereas the sedating effects of high-dose (3.5 g/kg) were preserved after acute and subchronic administration. The in vivo microdialysis revealed that αCaMKII(T286A) mice showed no dopamine (DA) response in the nucleus accumbens to acute or subchronic alcohol administration, but enhanced serotonin (5-HT) responses in the prefrontal cortex. The attenuated DA response in αCaMKII(T286A) mice was in line with altered c-Fos activation in the ventral tegmental area after acute and subchronic alcohol administration. In order to compare findings in mice with the human condition, we tested 23 single-nucleotide polymorphisms (SNPs) in the CAMK2A gene for their association with alcohol dependence in a population of 1333 male patients with severe alcohol dependence and 939 controls. We found seven significant associations between CAMK2A SNPs and alcohol dependence, one of which in an autophosphorylation-related area of the gene. Together, our data suggest αCaMKII autophosphorylation as a facilitating mechanism in the establishment of alcohol drinking behavior with changing the DA-5-HT balance as a putative mechanism.


Subject(s)
Alcohol Drinking/metabolism , Alcoholism/genetics , Calcium-Calmodulin-Dependent Protein Kinase Type 2/genetics , Calcium-Calmodulin-Dependent Protein Kinase Type 2/metabolism , Genetic Predisposition to Disease/genetics , Animals , Behavior, Addictive/metabolism , Case-Control Studies , Dopamine/metabolism , Dose-Response Relationship, Drug , Ethanol/pharmacology , Female , Humans , Hypnotics and Sedatives/pharmacology , Male , Mice , Motor Activity/drug effects , Nucleus Accumbens/drug effects , Nucleus Accumbens/metabolism , Phosphorylation , Polymorphism, Single Nucleotide/genetics , Prefrontal Cortex/drug effects , Prefrontal Cortex/metabolism , Serotonin/metabolism , Ventral Tegmental Area/drug effects , Ventral Tegmental Area/physiology
6.
Exp Brain Res ; 223(3): 429-39, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23108370

ABSTRACT

Adolescence is a transition period that is assumed to be characterized by increased sensitivity to reward. While there is growing research on reward processing in adolescents, investigations into the engagement of brain regions under different reward-related conditions in one sample of healthy adolescents, especially in a target age group, are missing. We aimed to identify brain regions preferentially activated in a reaction time task (monetary incentive delay (MID) task) and a simple guessing task (SGT) in a sample of 14-year-old adolescents (N = 54) using two commonly used reward paradigms. Functional magnetic resonance imaging was employed during the MID with big versus small versus no win conditions and the SGT with big versus small win and big versus small loss conditions. Analyses focused on changes in blood oxygen level-dependent contrasts during reward and punishment processing in anticipation and feedback phases. We found clear magnitude-sensitive response in reward-related brain regions such as the ventral striatum during anticipation in the MID task, but not in the SGT. This was also true for reaction times. The feedback phase showed clear reward-related, but magnitude-independent, response patterns, for example in the anterior cingulate cortex, in both tasks. Our findings highlight neural and behavioral response patterns engaged in two different reward paradigms in one sample of 14-year-old healthy adolescents and might be important for reference in future studies investigating reward and punishment processing in a target age group.


Subject(s)
Adolescent Behavior/physiology , Cognition/physiology , Corpus Striatum/physiology , Reward , Adolescent , Adolescent Behavior/psychology , Amygdala/physiology , Cerebellum/physiology , Female , Gyrus Cinguli/physiology , Humans , Male , Thalamus/physiology
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