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Disrupted Circadian Rhythm as a Common Player in Developmental Models of Neuropsychiatric Disorders
Eva M Marco1, Elena Velarde2, Ricardo Llorente2
1Department Physiology (Animal Physiology II), Faculty of Biological Sciences, Universidad Complutense de Madrid (UCM), 28040, Madrid, Spain. emmarco@bio.ucm.es.
Insights
Prenatal insults like stress or infection can alter fetal development, increasing the risk of neuropsychiatric disorders in offspring. Early-life disruptions to the circadian system may play a key role in these conditions.
Area of Science:
- Neuroscience
- Developmental Biology
- Psychiatry
Background:
- The intrauterine environment significantly impacts offspring neurodevelopment and mental health.
- Prenatal insults, including gestational stress and maternal infection, are linked to increased neuropsychiatric disorders.
- Circadian clock disruption is a hallmark of many neuropsychiatric disorders, but its link to early-life brain development is understudied.
Purpose of the Study:
- To review evidence linking prenatal insults to alterations in brain development and the circadian system.
- To explore the causal determinants of neuropsychiatric disorders originating from early-life exposures.
- To highlight the role of the circadian system in mediating the effects of prenatal insults on neurodevelopment.
Main Methods:
- Review of clinical literature.
- Analysis of findings from animal models investigating prenatal insults.
- Examination of hormonal and genetic changes in response to gestational stress and maternal immune activation.
Main Results:
- Prenatal insults alter the fetal hormonal milieu, increasing glucocorticoids and pro-inflammatory cytokines.
- These biological changes affect gene expression and interfere with critical brain development processes.
- Evidence suggests a connection between circadian system malfunction, early-life insults, and adult neuropsychiatric diseases.
Conclusions:
- Prenatal insults can disrupt fetal development, leading to behavioral anomalies and increased risk for neuropsychiatric disorders.
- The body's circadian system components may be altered by prenatal insults, contributing to disrupted neural and endocrine programming.
- Further research is crucial to understand how prenatal insults impact the circadian system and subsequent mental health outcomes.
Abstract:
The environment in which individuals develop and mature is critical for their physiological and psychological outcome; in particular, the intrauterine environment has reached far more clinical relevance given its potential influence on shaping brain function and thus mental health. Gestational stress and/or maternal infection during pregnancy has been related with an increased incidence of neuropsychiatric disorders, including depression and schizophrenia. In this framework, the use of animal models has allowed a formal and deep investigation of causal determinants. Despite disruption of circadian clocks often represents a hallmark of several neuropsychiatric disorders, the relationship between disruption of brain development and the circadian system has been scarcely investigated. Nowadays, there is an increasing amount of studies suggesting a link between circadian system malfunction, early-life insults and the appearance of neuropsychiatric diseases at adulthood. Here, we briefly review evidence from clinical literature and animal models suggesting that the exposure to prenatal insults, i.e. severe gestational stress or maternal immune activation, changes the foetal hormonal milieu increasing the circulating levels of both glucocorticoids and pro-inflammatory cytokines. These two biological events have been reported to affect genes expression in experimental models and critically interfere with brain development triggering and/or exacerbating behavioural anomalies in the offspring. Herein, we highlight the importance to unravel the individual components of the body circadian system that might also be altered by prenatal insults and that may be causally associated with the disruption of neural and endocrine developmental programming.
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