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Published on: December 14, 2014
Sequential Photoperiodic Programing of Serotonin Neurons, Signaling and Behaviors During Prenatal and Postnatal
Justin K Siemann1,2, Noah H Green1,2, Nikhil Reddy3
1Department of Biological Sciences, Vanderbilt University, Nashville, TN, United States.
Insights
Early life light exposure programs brain serotonin systems. Prenatal light influences neuron excitability, while postnatal light refines serotonin signaling and behavior, impacting mood disorders.
Area of Science:
- Neuroscience
- Developmental Biology
- Behavioral Science
Background:
- Early life environmental stimuli critically influence neurodevelopment.
- The brain's serotonergic system, vital for mood regulation, is sensitive to photoperiod (daylight duration).
- Neurodevelopmental disorders are linked to early life disruptions.
Purpose of the Study:
- To investigate sensitive developmental periods for photoperiodic programming of serotonin neurons and behavior.
- To determine the distinct roles of prenatal versus postnatal photoperiod exposure.
- To understand the sequential programming of neuronal excitability, serotonin levels, and affective behaviors.
Main Methods:
- Mice were exposed to long (LD 16:8) or short (LD 8:16) photoperiods during specific prenatal or postnatal windows.
- Examined dorsal raphe nucleus (DRN) serotonin neuron excitability, midbrain serotonin/metabolite levels, and affective behaviors at P30 and P50.
- Compared effects of prenatal-only, postnatal-only, and continuous photoperiod exposures.
Main Results:
- Prenatal exposure to long photoperiods alone programmed increased DRN serotonin neuron excitability, persisting into adulthood.
- Long photoperiod exposure elevated serotonin and metabolite levels and reduced depressive-like behaviors.
- Prenatal programming of excitability was necessary but insufficient for behavioral and signaling changes; postnatal exposure was required.
Conclusions:
- Photoperiodic programming of serotonin function is a sequential process.
- Prenatal photoperiod exposure establishes neuronal excitability, a foundational step.
- Postnatal photoperiod exposure further modulates serotonin signaling and affective behaviors, conferring protective effects against depressive-like behaviors.
Abstract:
Early life stimuli during critical developmental time frames have been linked to increased risk for neurodevelopmental disorders later in life. The serotonergic system of the brain is implicated in mood disorders and is impacted by the duration of daylight, or photoperiod. Here we sought to investigate sensitive periods of prenatal and postnatal development for photoperiodic programming of DRN serotonin neurons, midbrain serotonin and metabolite levels along with affective behaviors in adolescence (P30) or adulthood (P50). To address these questions we restricted the interval of exposure to prenatal development (E0-P0) for Long summer-like photoperiods (LD 16:8), or Short winter-like photoperiods (LD 8:16) with postnatal development and maturation then occurring under the opposing photoperiod. Prenatal exposure alone to Long photoperiods was sufficient to fully program increased excitability of DRN serotonin neurons into adolescence and adulthood, similar to maintained exposure to Long photoperiods throughout development. Interestingly, Long photoperiod exposure can elevate serotonin and its' corresponding metabolite levels along with reducing affective behavior, which appear to have both pre and postnatal origins. Thus, exposure to Long photoperiods prenatally programs increased DRN serotonin neuronal excitability, but this step is insufficient to program serotonin signaling and affective behavior. Continuing influence of Long photoperiods during postnatal development then modulates serotonergic content and has protective effects for depressive-like behavior. Photoperiodic programing of serotonin function in mice appears to be a sequential process with programing of neuronal excitability as a first step occurring prenatally, while programing of circuit level serotonin signaling and behavior extends into the postnatal period.
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