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Effects of oxytocin and genetic variants on brain and behaviour: Implications for treatment in schizophrenia
Cali F Bartholomeusz1, Eleni P Ganella1, Izelle Labuschagne2
1Orygen, The National Centre of Excellence in Youth Mental Health and the Centre for Youth Mental Health, The University of Melbourne, Parkville, Victoria, Australia; Melbourne Neuropsychiatry Centre, Department of Psychiatry, The University of Melbourne & Melbourne Health, Carlton South, Victoria, Australia.
Abstract:
Impairments in social cognition and poor social functioning are core features of schizophrenia-spectrum disorders. In recent years, there has been a move towards developing new treatment strategies that specifically target social cognitive and social behavioural deficits. Oxytocin (OXT) is one such strategy that has gained increasing attention. There is a strong rationale for studying OXT in psychosis, from both an evolutionary perspective and neurodevelopmental-cognitive model of schizophrenia. Thus, the aim of this review was to critique and examine the observational and clinical oxytocin trial literature in schizophrenia-spectrum disorders. A handful of clinical trials suggest that OXT treatment may be beneficial for remediating social cognitive impairments, psychiatric symptoms, and improving social outcomes. However, inconsistencies exist in this literature, which may be explained by individual differences in the underlying neural response to OXT treatment and/or variation in the oxytocin and oxytocin receptor genes. Therefore, we additionally reviewed the evidence for structural and functional neural intermediate phenotypes in humans that link genetic variants to social behaviour/thinking, and discuss the implications of such interactions in the context of dysfunctional brain networks in schizophrenia. Factors that pose challenges for future OXT clinical research include the impact of age, sex, and ancestry, task-specific effects, bioavailability and pharmacokinetics, as well as neurotransmitter and drug interactions. While initial findings from OXT single dose/clinical trial studies are promising, more interdisciplinary research in both healthy and psychiatric populations is needed before determining whether OXT is a viable treatment option/adjunct for addressing poor illness outcomes in psychotic disorders.
Insights
Oxytocin (OXT) shows promise for improving social cognition and functioning in schizophrenia spectrum disorders. However, inconsistent results necessitate further research into genetic and neural factors influencing OXT treatment efficacy.
Area of Science:
- Neuroscience
- Psychiatry
- Genetics
Background:
- Schizophrenia spectrum disorders are characterized by social cognition and functioning deficits.
- Emerging treatments aim to target these social deficits, with oxytocin (OXT) gaining attention.
- Evolutionary and neurodevelopmental models support OXT investigation in psychosis.
Purpose of the Study:
- To review and critique observational and clinical trial data on oxytocin in schizophrenia spectrum disorders.
- To examine the role of genetic variations and neural intermediate phenotypes in OXT response.
- To identify challenges and future directions for oxytocin research in psychosis.
Main Methods:
- Literature review of observational studies and clinical trials involving oxytocin.
- Analysis of genetic data related to oxytocin and its receptors.
- Examination of neural intermediate phenotypes linking genetics to social cognition.
Main Results:
- Some clinical trials suggest oxytocin may improve social cognition, psychiatric symptoms, and social outcomes.
- Inconsistencies in findings may stem from individual differences in neural response and genetic variations.
- Evidence suggests neural phenotypes link genetic variants to social behavior, impacting dysfunctional brain networks in schizophrenia.
Conclusions:
- Oxytocin shows potential as a treatment for social deficits in schizophrenia spectrum disorders.
- Further interdisciplinary research is required to address inconsistencies and optimize OXT treatment.
- Factors like age, sex, ancestry, and drug interactions need consideration for future clinical trials.
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