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High-Fat Diet Exacerbates Stress Responsivity in Juvenile Traumatic Brain Injury
Allie M Smith1, Zyra J Warfield1, Seth L Johnson1
1Department of Neurology, University of Mississippi Medical Center, Jackson, Mississippi, USA.
Insights
High-fat diets exacerbate traumatic brain injury (TBI) effects in juvenile rats, leading to hypothalamic-pituitary-adrenal (HPA) axis dysfunction and increased anxiety-like behaviors. This study highlights the detrimental impact of diet on TBI recovery.
Area of Science:
- Neuroscience
- Pediatrics
- Endocrinology
Background:
- Traumatic brain injury (TBI) is a major cause of death and disability in children, often leading to anxiety and stress behaviors.
- Pediatric TBI can cause hypothalamic-pituitary-adrenal (HPA) axis dysregulation.
- Western diets, high in saturated fats and sugars, are linked to HPA axis dysfunction and behavioral issues.
Purpose of the Study:
- To investigate the combined effects of high-fat diet (HFD) consumption and TBI on HPA axis function and behavior in juvenile rats.
- To determine if HFD exacerbates TBI-induced HPA axis dysregulation and anxiety-like behaviors.
Main Methods:
- Male juvenile rats were fed either a standard chow or a high-fat diet (HFD) with high-fructose corn syrup.
- Subjects underwent either a sham TBI or a TBI using the CHIMERA model.
- Behavioral tests (open field, acute restraint stress) and molecular analyses (RT-PCR, immunohistochemistry, hormone assays) were performed.
Main Results:
- HFD-fed TBI rats exhibited increased walking time, reduced center entries in the open field test, and elevated pre-stress ACTH and corticosterone levels.
- HFD-fed TBI rats showed increased cFos expression in the hypothalamic paraventricular nucleus (PVN) and reduced expression of HPA axis genes (NR3C1, NR3C2, CRHR2, AVP).
- These findings indicate exacerbated HPA axis dysfunction and anxiety-like behaviors in HFD-fed TBI rats compared to controls.
Conclusions:
- Combined HFD consumption and TBI significantly disrupt HPA axis function in juvenile rats.
- This disruption leads to heightened anxiety-like behaviors, suggesting a critical interaction between diet and TBI severity.
- These results underscore the importance of dietary interventions in managing pediatric TBI.
Abstract:
Abstract Traumatic brain injury (TBI) is one of the leading causes of death for children in the United States. Juveniles are more likely to sustain TBIs than most other age groups, and TBI has been shown to result in increased anxiety and stress behaviors. In addition, the hypothalamic-pituitary-adrenal (HPA) axis has previously been shown to become dysregulated after a TBI. Further, many children consume diets high in saturated fats and refined sugars, which are also connected to alterations in HPA axis function and behavior disorders. The goal of the current study was to identify a potential relationship between high-fat diet (HFD) consumption and TBI on HPA axis function in juvenile rats. In the present study, male juvenile Long-Evans rats were fed either a combination of an HFD with a high-fructose corn syrup solution or a standard chow diet. On post-natal Day 30, subjects sustained either a sham TBI or a TBI via the Closed-Head Injury Model of Engineered Rotational Acceleration (CHIMERA). Subjects participated in a trial of the open field test (OFT) following injury. In addition, some rats performed in an acute restraint stress test. All subjects were euthanized 7 days post-injury. Brain and blood plasma samples were collected for use in real-time polymerase chain reaction (RT-PCR), immunohistochemistry, and corticosterone or adrenocorticotropic hormone (ACTH) assays. Immediately following TBI, injured juveniles had increased time to righting and walking, with HFD-fed TBI rats having increased time to walking over Chow-fed TBI rats. HFD-fed TBI rats had a reduced number of entries to the center of the OFT, in addition to reduced time spent in the center compared with HFD Sham controls and Chow TBI rats. During the acute restraint stress test, HFD-fed TBI rats had elevated pre-stress ACTH and corticosterone and post-stress ACTH levels. Pre-stress ACTH levels were significantly elevated in HFD TBI compared with Chow TBI. Further, pre-stress ACTH:corticosterone ratios were elevated in HFD TBI compared with Chow TBI. cFos immunoreactivity in the paraventricular nucleus (PVN) of the hypothalamus following the acute restraint stress test was elevated in HFD-fed TBI rats. HFD TBI rats had greater activation of cFos in the PVN compared with Chow TBI. In addition, RT-PCR showed significantly reduced expression of relevant HPA axis genes, NR3C1, NR3C2, and CRHR2, in the hypothalamus of TBI subjects compared with Sham subjects. Further, AVP and CRHR2 in the hypothalamus were significantly reduced in HFD TBI compared with Chow TBI. These results offer evidence that TBI paired with high-fat diet consumption can cause HPA axis dysfunction, resulting in more anxiety-like behaviors.
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