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Published on: December 6, 2024
Distinct Impact of Inflammatory Versus Psychophysiological Stress on Brain-Wide Activation of Melanocortin Receptor
Myunghyun Cheon1, Woonhee Kim1, ChiHye Chung1
1Department of Biological Sciences, Konkuk University, Seoul, South Korea.
Abstract:
Central melanocortin signaling plays a critical role in maintaining energy homeostasis by regulating energy intake and expenditure, with impairment of this system closely related to metabolic diseases such as obesity. Among melanocortin receptor subtypes, melanocortin receptor 4 (MC4R) is the primary mediator of these effects within the central nervous system. Accumulating evidence suggests that MC4R contributes to stress-induced disruptions in feeding behavior and energy homeostasis. However, the precise neural mechanisms by which stress alters MC4R activity remain incompletely understood. In this study, we compared brain-wide c-Fos expression patterns induced by two distinct stress paradigms: lipopolysaccharide (LPS)-induced inflammatory stress and restraint stress in male mice, and further examined the involvement of MC4R-expressing (MC4R+) neurons in these stress conditions. We found that both stressors elicited c-Fos activation in brain areas associated with stress responses as well as feeding regulation. Notably, LPS-induced stress, but not restraint stress, selectively activated MC4R+ neurons in the central amygdala (CeA) and oval nucleus of the bed nucleus of stria terminalis (ovBNST). These results highlight the distinct recruitment of MC4R+ neurons during acute inflammatory stress in male mice, offering novel insights into the role of MC4R in the stress-induced imbalance of energy homeostasis depending on stressor types.
Insights
Central melanocortin signaling regulates energy balance. This study shows inflammatory stress, unlike physical stress, activates specific melanocortin 4 receptor (MC4R) neurons, impacting feeding behavior.
Area of Science:
- Neuroscience
- Metabolic Regulation
- Stress Response
Background:
- Central melanocortin signaling is vital for energy homeostasis.
- Melanocortin receptor 4 (MC4R) is key in the central nervous system for regulating intake and expenditure.
- MC4R dysfunction is linked to metabolic diseases like obesity.
Purpose of the Study:
- To investigate how different stressors affect MC4R-expressing neurons.
- To understand the neural mechanisms linking stress, MC4R activity, and energy balance.
Main Methods:
- Comparison of brain-wide c-Fos expression patterns in male mice under two stress conditions: lipopolysaccharide (LPS)-induced inflammatory stress and restraint stress.
- Examination of the involvement of MC4R-expressing (MC4R+) neurons in response to these stressors.
Main Results:
- Both LPS and restraint stress activated c-Fos in brain regions related to stress and feeding regulation.
- LPS-induced stress selectively activated MC4R+ neurons in the central amygdala (CeA) and oval nucleus of the bed nucleus of the stria terminalis (ovBNST).
- Restraint stress did not show this selective activation of MC4R+ neurons.
Conclusions:
- MC4R+ neurons exhibit distinct recruitment patterns depending on the type of acute stress.
- Inflammatory stress uniquely engages specific MC4R+ neuronal populations.
- Findings provide insights into the role of MC4R in stress-induced energy imbalance based on stressor type.
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