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The 22q11.2 deletion in children: high rate of autistic disorders and early onset of psychotic symptoms.

OBJECTIVE: To examine psychopathology and influence of intelligence level on psychiatric symptoms in children with the 22q11.2 deletion syndrome (22q11DS). METHOD: Sixty patients, ages 9 through 18 years, were evaluated. Assessments followed standard protocols, including structured and semistructured interviews of parents, videotaped psychiatric interview, and intelligence assessment of the child. Intelligence level, psychiatric symptoms, and classification provided the main outcome. RESULTS: High rates of autism spectrum disorders (30 of 60, 50.0%) and psychotic symptoms (16 of 60, 26.7%) were found in this sample. In 7 of 60 (11.7%), the psychotic symptoms interfered with behavior and caused considerable distress. In these cases, the diagnosis of a psychotic disorder was applied. The average age of the children with psychotic symptoms at time of assessment was 14.2 years. Although it is likely that the high rate of psychopathology in this sample is to some extent associated with the lower level of cognitive function, a major effect of the degree of cognitive impairment on psychiatric morbidity was not found. CONCLUSION: Autism spectrum disorders and subthreshold autistic symptomatology are common in children with 22q11DS. Furthermore, a high rate of psychosis and psychotic symptoms is found in this childhood sample, suggesting an early onset of psychosis in 22q11DS patients. Autistic and psychotic disorders should be considered to be main elements of the behavioral phenotype of 22q11DS children.

Adolescent↗

Autism in Angelman syndrome: an exploration of comorbidity.

The aim was to explore the comorbidity between Angelman syndrome and autism spectrum disorders (ASDs). Identification of autism in children with Angelman syndrome presents a diagnostic challenge. In the present study, 16 children with Angelman syndrome, all with a 15q11-13 deletion, were examined for ASDs. Thirteen children with Angelman syndrome received an ADOS-G algorithm classification of ASD; the remaining three were outside the autistic spectrum. Ten fulfilled the criteria for autism, and three for PDD-NOS. The 10 children with Angelman syndrome and comorbid autism were compared with eight children with only autism regarding their social and communicative skills. The results indicated that Angelman syndrome is better understood in terms of developmental delay, and autism in terms of developmental deviance. It is concluded that autism might have been overdiagnosed due to the extremely low mental age of the children with Angelman syndrome.

Adolescent↗

Developmental stages of developmental screening: steps to implementation of a successful program.

Through the use of 2-stage screening strategies, research studies have shown that autism spectrum disorders and other developmental disabilities can now be detected reliably and with greater validity and in children as young as 18 months of age. Screening and diagnostic practices in the medical and educational arena lag far behind clinical research, however, with the average patient age at time of diagnosis being 3 to 6 years.We discuss the challenges of instituting universal developmental screening as part of pediatric care and present 2 models of existing or planned programs of early screening for autism spectrum disorder and developmental disability (1 in a community-based setting and 1 in a pediatric setting), and discuss the pros and cons of the different strategies.

Autistic Disorder↗

Gene-environment interaction between perinatal oxytocin exposure and Pten mutation shapes epigenetic reprogramming of oxytocin signaling and behavior in mice.

Synthetic oxytocin (Pitocin) is the most commonly used pharmacologic agent for induction and augmentation of labor. Beyond its uterotonic effects, oxytocin plays a critical role in neurodevelopment and social behavior. Dysregulated oxytocin signaling has been implicated in autism spectrum disorder (ASD), raising concern that perinatal exposure to exogenous oxytocin may have lasting neurodevelopmental consequences. This study aimed to determine whether offspring harboring a genetic predisposition for ASD are differentially impacted by perinatal oxytocin exposures, with a focus on long-term oxytocin signaling and autism-like behavior. Pregnant mice carrying offspring with heterozygous mutations in phosphatase and tensin homolog deleted on chromosome ten (Pten), a well-established monogenic risk factor for ASD, received continuous oxytocin versus phosphate-buffered saline (PBS) control via micro-osmotic pumps during late gestation. Wild-type (WT) offspring exposed to each treatment served as a secondary control. Adult offspring were assessed for oxytocin receptor (Oxtr) methylation in the frontal cortex and hippocampus, oxytocin expression in the hypothalamus, serum oxytocin levels, and were subject to a battery of social and anxiety-related behavior tests. Perinatal oxytocin exposure produced genotype-dependent effects in offspring. Epigenetic analyses revealed bidirectional remodeling of Oxtr methylation in the frontal cortex and hippocampus, with increased exon 1 methylation in WT mice and decreased methylation in Pten-mutant mice, resulting in significant genotype-treatment interactions. Hypothalamic oxytocin expression increased following treatment regardless of genotype, though baseline levels were higher in Pten-mutant mice. Neither oxytocin treatment nor genotype impacted long-term serum oxytocin levels. Behavioral outcomes were modest but context-specific: repetitive behaviors and cognition performance were unchanged, but oxytocin-treated Pten-mutant mice exhibited increased anxiety-like behavior alongside improved social memory. In contrast, oxytocin-treated WT mice showed reduced social novelty preference. Exploratory analyses suggested potential sex-dependent trends. Our findings support a model in which genetic susceptibility shapes the epigenetic encoding of early-life hormonal signals, thereby recalibrating oxytocin system function and downstream behavioral outcomes. Together, these data highlight the context-dependent effects of perinatal oxytocin exposure and argue against uniformly beneficial or detrimental effects, emphasizing the importance of gene-environment interactions in neurodevelopmental trajectories.

Animals↗

The social behavioral phenotype of Kabuki syndrome.

OBJECTIVE: This study describes the social-communication and behavioral profile associated with Kabuki syndrome (KS), including exploratory comparisons between individuals with a pathogenic variant in KMT2D (KS1) versus KDM6A (KS2). METHOD: Thirty-five caregivers of children/adults with KS (25F, Mage = 13.45, SD = 7.60) completed the Social Responsiveness Scale 2nd Edition (SRS-2), Colorado Learning Difficulties Questionnaire, and/or Strengths and Difficulties Questionnaire. Descriptive analyses and non-parametric tests were conducted to examine behavioral trends in the entire cohort and to explore differences in social behaviors and autism characteristics between those with KS1 versus KS2. RESULTS: About a third of the sample have a prior diagnosis of autism spectrum disorder, with rates more elevated in KS2 versus KS1 (67% vs. 23%). In the full cohort, 72% fell in borderline/clinical ranges for Peer Problems, while only 3% yielded atypical scores for Prosocial Behaviors. Those with KS1 were rated to show most challenges in restricted/repetitive behaviors (RRBs), which fell in the moderately severe range, compared to other social domains (social communication, social awareness, social motivation). In contrast, social motivation was the sole area rated within normal limits. CONCLUSION: Those with KS2 showed greater difficulties across all social behavior/cognitive domains than KS1 counterparts, albeit both presented with similar severity in RRB and prosocial behaviors. Prominent features of the KS social behavioral phenotype include pronounced difficulties with inflexible behaviors and restricted interests juxtaposed with strong prosocial tendencies. KS2 may confer increased risk for autism-related characteristics, underscoring the need for more systematic investigations.

Humans↗

A paternally inherited duplication in the Prader-Willi/Angelman syndrome critical region: a case and family study.

The Prader-Willi/Angelman Critical Region (PWACR; Chromosome 15q11-13) is of interest as a potential locus for genes conferring susceptibility to autism spectrum disorders (ASD). This report describes a female proband referred for evaluation of a possible ASD. Genetic analyses indicated that the proband, her father and one of her sisters, carried a paternally derived interstitial duplication involving 15q11-13. The proband showed evidence of ASD (PDD-NOS), borderline mental retardation, mild hypotonia and joint laxity. Her father and her sister were of normal intelligence and neither was thought to have an ASD, although speech/language difficulties and some autistic type behaviours were reported to have been present early in the development of the sister. This is one of the first reports of a child with a paternal duplication and an autism spectrum disorder. More research is required to determine whether paternally derived duplications that involve 15q11-13 are associated with developmental impairments.

Adult↗

Parenting interventions for children with autism spectrum and disruptive behavior disorders: opportunities for cross-fertilization.

Empirical support exists for parent training/education (PT/PE) interventions for children with disruptive behavior disorders (DBD) and autism spectrum disorders (ASD). While the models share common roots, current approaches have largely developed independently and the research findings have been disseminated in two different literature traditions: mental health and developmental disabilities. Given that these populations often have overlapping clinical needs and are likely to receive services in similar settings, efforts to integrate the knowledge gained in the disparate literature may be beneficial. This article provides a systematic overview of the current (1995-2005) empirical research on PT/PE for children with DBD and ASD; attending to factors for cross-fertilization. Twenty-two ASD and 38 DBD studies were coded for review. Literature was compared in three main areas: (1) research methodology, (2) focus of PT/PE intervention, and (3) PT/PE procedures. There was no overlap in publication outlets between the studies for the two populations. Results indicate that there are opportunities for cross-fertilization in the areas of (1) research methodology, (2) intervention targets, and (3) format of parenting interventions. The practical implications of integrating these two highly related areas of research are identified and discussed.

Autistic Disorder↗

Risperidone in preschool children with autistic spectrum disorders: an investigation of safety and efficacy.

INTRODUCTION: Early intervention in autism spectrum disorders (ASDs) appears promising and may represent a window of opportunity for more effective treatment. Whereas the safety and efficacy of risperidone have been established for children aged 5 and older, they has not been adequately tested in preschool children. METHODS: A randomized placebo-controlled study of risperidone in preschool children was conducted in a sample of young children, most of whom were also undergoing intensive behavioral treatment. RESULTS: Preschool children tolerated low-dose risperidone well with no serious adverse effects observed over a 6-month treatment period. Weight gain and hypersalivation were the most common side effects reported, and hyperprolactinemia without lactation or related signs was observed. Significant differences between groups found at baseline complicated the analyses; however, controlling for some of these differences revealed that preschoolers on risperidone demonstrated greater improvements in autism severity. The change in autism severity scores from baseline to 6-month follow up for the risperidone group was 8% compared to 3% for the placebo group. Notably, both groups significantly improved over the 6-month treatment period. CONCLUSIONS: Study findings suggest that risperidone is well tolerated in preschoolers over a 6-month period, but that only minimally greater improvement in target symptoms was evident in the risperidone group, possibly due to the differences between groups at baseline or due to the small sample size. Although these findings are not sufficient to direct treatment, they suggest that larger-scale, double-blind, placebo-controlled investigations of risperidone in preschoolers with ASDs should now be conducted.

Antipsychotic Agents↗

Motivational processes and autonomic responsivity in Asperger's disorder: evidence from the Iowa Gambling Task.

Asperger's disorder (ASP), like other autism spectrum disorders, is associated with altered responsiveness to social stimuli. This study investigated learning and responsiveness to nonsocial, but motivational, stimuli in ASP. We examined choice behavior and galvanic skin conductance responses (SCRs) during the Iowa Gambling Task (IGT; Bechara et al., 1994) in 15 adolescents and young adults with ASP and 14 comparison subjects. We examined aspects of learning, attention to wins and losses, and response style with a formal cognitive model, the Expectancy-Valence Learning model (Busemeyer & Stout, 2002). The ASP group did not differ from the comparison group in proportions of selections from advantageous decks. However, ASP participants showed a distinct pattern of selection characterized by frequent shifts between the four IGT decks, whereas comparison participants developed clear deck preferences. SCR results showed some evidence of reduced responsiveness in the ASP group during the IGT. Results from the cognitive model indicated that, in contrast to the comparison group, the ASP group's selections were less consistent with the motivational significance they assigned to decks. Findings are discussed in the context of the neurobiological substrates associated with IGT performance.

Adolescent↗

The human aminophospholipid-transporting ATPase gene ATP10C maps adjacent to UBE3A and exhibits similar imprinted expression.

Maternal duplications of the imprinted 15q11-13 domain result in an estimated 1%-2% of autism-spectrum disorders, and linkage to autism has been identified within 15q12-13. UBE3A, the Angelman syndrome gene, has, to date, been the only maternally expressed, imprinted gene identified within this region, but mutations have not been found in autistic patients. Here we describe the characterization of ATP10C, a new human imprinted gene, which encodes a putative protein homologous to the mouse aminophospholipid-transporting ATPase Atp10c. ATP10C maps within 200 kb distal to UBE3A and, like UBE3A, also demonstrates imprinted, preferential maternal expression in human brain. The location and imprinted expression of ATP10C thus make it a candidate for chromosome 15-associated autism and suggest that it may contribute to the Angelman syndrome phenotype.

Angelman Syndrome↗

ARX mutation-associated interneuron defects provide insights into mechanisms underlying developmental epilepsies.

Cortical interneuron (cIN) dysfunction is associated with various neurodevelopmental and neurological disorders, including developmental epilepsies, autism spectrum disorders and intellectual disabilities. Mutations in ARX (aristaless-related homeobox) are linked to these conditions, with or without accompanying structural brain anomalies. We previously demonstrated that the loss of Arx in the mouse ganglionic eminence, the birthplace of cINs, is associated with seizures, whereas its loss in cortical excitatory neuron progenitor cells results in structural anomalies but no seizures. To elucidate the pathophysiological role of ARX in cINs and its relationship to seizure phenotype, Arx conditional mutant mouse lines were investigated using Gad2- and Nkx2.1-Cre drivers to target distinct populations in the cIN lineage. Our data demonstrate that ARX abrogation results in defects in cIN density and distribution, as well as perinatal lethality. In these mice, we observed defects in cell cycle exit, a biased loss of the marginal zone migration stream of cINs, shifts in cell fate from caudal ganglionic eminence to medial ganglionic eminence identity, and a reduced number of parvalbumin⁺ and somatostatin⁺ cINs, with parvalbumin⁺ cINs being more severely affected. Single-cell RNA sequencing combined with chromatin immunoprecipitation and sequencing revealed that ARX regulates key processes involved in cell cycle progression, cIN subtype differentiation and cIN migration. Investigation of one downregulated target gene, Lmo1, uncovered a potential mechanism by which ARX regulates the number and distribution of cINs in the cortex. Cortical slice cultures demonstrate that LMO1 inhibits cIN migration by repressing Cxcr4 expression, which encodes a key receptor involved in cortical guidance. These data indicate that ARX positively regulates cIN migration by derepressing LMO1's repressive role. Consistent with our mouse model, we observed a significant loss of parvalbumin+ and somatostatin+ cINs in the brain of a patient carrying a pathogenic variant of ARX, who was diagnosed with developmental epileptic encephalopathy. Together, our data provide novel insights into how ARX and its target genes regulate cIN development and migration and into the pathogenic mechanisms underlying a spectrum of neurodevelopmental disorders linked to loss of ARX.

Animals↗

Neuropsychiatric disorders.

Neuropsychiatric disorders of childhood include autism spectrum disorders, disorders comprising attention deficits (attention-deficit-hyperactivity disorder and deficits in attention, motor control and perception), tics (motor or vocal, or both), and obsessions and compulsions (obsessive-compulsive disorder). They affect a small proportion of the child population. They can now reliably be diagnosed, and are valid and clinically meaningful conditions. Effective interventions are available for most of these disorders.

Age of Onset↗

Clinical neurological abnormalities in young adults with Asperger syndrome.

Children with Asperger syndrome (AS), a neurodevelopmental disorder falling in the autism spectrum disorders, have an increased rate of neurological abnormalities, especially in motor coordination. While AS is a lifelong condition, little is known about the persistence of neurological abnormalities in adulthood. Twenty young adults with AS were compared with 10 healthy controls using a structured clinical neurological rating scale. The score for neurological abnormalities was higher in the AS group. In addition, a subscore for neurological soft signs indicating defective functioning of the central nervous system with a non-localizing value was significantly higher in the AS subjects. This preliminary study indicates that neurological abnormalities, soft signs in particular, represent a non-specific vulnerability factor for AS. Consistent with other features of AS, neurological abnormalities seem to persist into adulthood.

Adult↗

Social cognition and psychopathology in an evolutionary perspective. Current status and proposals for research.

The phylogenetic and ontogenetic developments of social cognition have been a major research focus of evolutionary and developmental psychology. Theory of mind or so-called Machiavellian intelligence, that is the capacity to infer mental states of other individuals and to manipulate them in order to maximise social success, probably emerged due to the need to cope with an increasingly complex social environment. Studies on social reasoning suggest disturbances of mental state attribution in psychiatric disorders. However, apart from autism spectrum disorders, the systematic evaluation of social cognition is still in its infancy, and the present data are ambiguous due to methodological difficulties. Based on the concept of the modular organisation of the mind, a stepwise investigation of social cognition in psychiatric disorders is proposed, including clinical description and available standardised methods. The specific characteristics of psychiatric disorders in respect of social cognition, therefore, may vary according to the hierarchical organisation of the social module. Systematic studies on social reasoning processes in psychiatric disorders may provide new insights also useful for the development of coping strategies in cognitive-behavioural therapy.

Biological Evolution↗

A clinical and laboratory evaluation of methionine cycle-transsulfuration and androgen pathway markers in children with autistic disorders.

BACKGROUND/AIMS: The prevalence of autism spectrum disorders (ASDs) is 1 in 300 children in the US. ASDs are characterized by impairments in social relatedness and communication, repetitive behaviors, abnormal movement patterns, and sensory dysfunction. Pre-pubertal age children with ASDs were assessed for metabolites in the methionine cycle-transsulfuration and androgen pathways, and for present physical development/behaviors indicative of hyperandrogenicity. METHODS: The Institutional Review Board of the Institute for Chronic Illnesses (Office for Human Research Protections, US Department of Health and Human Services IRB number: IRB00005375) approved the present study. Sixteen consecutive pre-pubertal age children (</=11 years old; mean +/- SD: 5.9 +/- 2.1 years old) with previously diagnosed ASDs that presented to the Genetic Centers of America for outpatient care were evaluated. RESULTS: Significantly (p < 0.01) increased levels of serum/plasma dehydroepiandrosterone and serum total testosterone relative to the age- and sex-specific normal laboratory reference ranges were observed. Conversely, serum follicle-stimulating hormone levels were significantly (p < 0.01) decreased. Plasma-reduced glutathione (p < 0.01), plasma cysteine (p < 0.01), plasma methionine (p < 0.01), serum cystathionine (p < 0.05), and serum homocysteine (p < 0.01) were all significantly decreased. CONCLUSION: The results suggest a possible cyclical interaction between the methionine cycle-transsulfuration and androgen pathways in some children with ASDs.

Androgens↗

Comparison of clinical efficacy and gut microbiota characteristics in children with ASD treated with fecal microbiota transplantation and ketogenic diet.

OBJECTIVE: Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder characterized by impairments in social communication and interaction, along with restricted, repetitive patterns of behavior. It is often accompanied by gastrointestinal dysfunction and gut microbiota dysbiosis. Fecal Microbiota Transplantation (FMT) and the Ketogenic Diet (KD) are interventions targeting the gut microbiota for ASD. METHODS: 30 participants were diagnosed with ASD according to DSM-5 and ADOS-2. ASD core symptoms were evaluated with CARS and ABC. Gut microbiota composition was analyzed by shotgun metagenomic sequencing. RESULTS: Both groups demonstrated significant improvements in core symptoms. In the FMT group, the mean CARS score significantly decreased from 34.87 to 33.53 (p&#x2009;<&#x2009;0.01); in the KD group, it declined from 35.13 to 33 (p&#x2009;<&#x2009;0.01). The mean ABC score reduced from 79.93 to 69.33 (p&#x2009;=&#x2009;0.064) in the FMT group and from 63.07 to 42.73 (p&#x2009;<&#x2009;0.01) in the KD group. Following the intervention, no statistically significant changes were observed in &#x3b1;-diversity or &#x3b2;-diversity within either group. LEfSe analysis revealed distinct post-intervention microbial signatures: FMT significantly enriched butyrate-producing taxa (Wujia chipingensis, Eubacterium sp. MSJ-33, and Butyrivibrio crossotus), while KD elevated Blautia massiliensis and decreased propionate metabolism -associated taxa (Veillonella sp. S12025-13 and Veillonella nakazawae). KEGG enrichment analysis revealed that KD enriched propionate metabolism (Fold enrichment&#x2009;=&#x2009;3.747, q&#x2009;=&#x2009;0.010) and aromatic compound degradation (Fold enrichment&#x2009;=&#x2009;3.591, q&#x2009;=&#x2009;0.010). CONCLUSIONS: Both interventions significantly improved clinical symptoms among children with ASD, potentially through distinct patterns of gut microbiota modulation. CLINICAL TRIALS NUMBER: NCT06348433 (03/21/2024).

Child↗

[Relevance and results of Theory of Mind research for autism and other psychiatric disorders].

OBJECTIVES: Disorders of the autistic spectrum are basically characterised by a triad of symptoms: dysfunction of social interaction, communication deficits, and stereotyped behaviour patterns and interests. One of the most prominent approaches to explaining these abnormalities is the "Theory of Mind" (Baron-Cohen et al., 1885). METHODS: The present review discusses and critically examines the ongoing research and recapitulates the essential findings of the last ten years, focussing on their methodological quality and utility to explain other psychiatric disorders. RESULTS: Despite considerable research efforts in this field, the existing concepts do not constitute a consistent framework for analysing the development of autism spectrum disorders. CONCLUSIONS: Future research should aim to verify the impact of the existing theoretical models and to emphasise the similarities of the different concepts in order to gain specific information about potential causal factors of autism.

Adolescent↗

Effect of fluoxetine on regional cerebral metabolism in autistic spectrum disorders: a pilot study.

The regional metabolic effects of fluoxetine were examined in patients with autism spectrum disorders. Six adult patients with DSM-IV and Autism Diagnostic Interview (ADI) diagnoses of autism (n = 5) and Asperger's syndrome (n = 1), entered a 16-wk placebo-controlled cross-over trial of fluoxetine. The patients received (18)F-deoxyglucose positron emission tomography with co-registered magnetic resonance imaging at baseline and at the end of the period of fluoxetine administration. After treatment, the patients showed significant improvement on the scores of the Yale--Brown Obsessive--Compulsive Scale -- Obsessions subscale and the Hamilton Anxiety Scale; Clinical Global Impressions -- Autism scores showed 3 of the patients much improved and 3 unchanged. Relative metabolic rates were significantly higher in the right frontal lobe following fluoxetine, especially in the anterior cingulate gyrus and the orbitofrontal cortex. Patients with higher metabolic rates in the medial frontal region and anterior cingulate when unmedicated were more likely to respond favourably to fluoxetine. These results are consistent with those in depression indicating that higher cingulate gyrus metabolic rates at baseline predict SRI response.

Adult↗