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The circadian system is a target and modulator of prenatal cocaine effects
Eva H Shang1, Irina V Zhdanova
1Department of Anatomy and Neurobiology, Boston University School of Medicine, Boston, Massachusetts, United States of America.
Background:
Prenatal exposure to cocaine can be deleterious to embryonic brain development, but the results in humans remain controversial, the mechanisms involved are not well understood and effective therapies are yet to be designed. We hypothesize that some of the prenatal effects of cocaine might be related to dysregulation of physiological rhythms due to alterations in the integrating circadian clock function.
Methodology And Principle Findings:
Here we introduce a new high-throughput genetically well-characterized diurnal vertebrate model for studying the mechanisms of prenatal cocaine effects by demonstrating reduced viability and alterations in the pattern of neuronal development following repeated cocaine exposure in zebrafish embryos. This effect is associated with acute cocaine-induced changes in the expression of genes affecting growth (growth hormone, zGH) and neurotransmission (dopamine transporter, zDAT). Analysis of circadian gene expression, using quantitative real-time RT-PCR (QPCR), demonstrates that cocaine acutely and dose-dependently changes the expression of the circadian genes (zPer-3, zBmal-1) and genes encoding melatonin receptors (zMelR) that mediate the circadian message to the entire organism. Moreover, the effects of prenatal cocaine depend on the time of treatment, being more robust during the day, independent of whether the embryos are raised under the light-dark cycle or in constant light. The latter suggests involvement of the inherited circadian factors. The principal circadian hormone, melatonin, counteracts the effects of cocaine on neuronal development and gene expression, acting via specific melatonin receptors.
Conclusions/Significance:
These findings demonstrate that, in a diurnal vertebrate, prenatal cocaine can acutely dysregulate the expression of circadian genes and those affecting melatonin signaling, growth and neurotransmission, while repeated cocaine exposure can alter neuronal development. Daily variation in these effects of cocaine and their attenuation by melatonin suggest a potential prophylactic or therapeutic role for circadian factors in prenatal cocaine exposure.
Insights
Prenatal cocaine exposure disrupts embryonic brain development by altering circadian rhythms and gene expression. Melatonin can counteract these harmful effects, suggesting a potential therapeutic role.
Area of Science:
- Neuroscience
- Chronobiology
- Developmental Biology
Background:
- Prenatal cocaine exposure poses risks to embryonic brain development, but mechanisms and therapies remain unclear.
- Circadian rhythm dysregulation is hypothesized to contribute to cocaine's prenatal effects.
Purpose of the Study:
- To investigate the impact of prenatal cocaine exposure on embryonic development and circadian clock function using a diurnal vertebrate model.
- To explore the role of circadian genes, melatonin signaling, and their potential as therapeutic targets.
Main Methods:
- Utilized a high-throughput, genetically characterized diurnal zebrafish model.
- Assessed embryonic viability and neuronal development patterns after cocaine exposure.
- Analyzed gene expression of growth hormone (zGH), dopamine transporter (zDAT), circadian genes (zPer-3, zBmal-1), and melatonin receptors (zMelR) using quantitative real-time RT-PCR (QPCR).
Main Results:
- Prenatal cocaine exposure reduced viability and altered neuronal development in zebrafish embryos.
- Cocaine exposure acutely altered the expression of genes involved in growth, neurotransmission, and circadian rhythm.
- Effects were dose-dependent, time-of-day specific (more robust during the day), and melatonin counteracted cocaine's detrimental effects on development and gene expression.
Conclusions:
- Prenatal cocaine exposure acutely dysregulates circadian gene expression and melatonin signaling, impacting neuronal development.
- Daily variations in cocaine's effects and melatonin's protective role highlight the significance of circadian factors.
- Circadian factors, particularly melatonin, show potential for prophylactic or therapeutic intervention in prenatal cocaine exposure.
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