Acute stress modulates the outcome of traumatic brain injury-associated gene expression and behavioral responses.
Johanna Christina ReinersLaura LeopoldVera HallebachDaniela SinskePhilip MeierMattia AmorosoDominik LanggartnerStefan O ReberBernd KnöllPublished in: FASEB journal : official publication of the Federation of American Societies for Experimental Biology (2023)
Psychological stress and traumatic brain injury (TBI) result in long-lasting emotional and behavioral impairments in patients. So far, the interaction of psychological stress with TBI not only in the brain but also in peripheral organs is poorly understood. Herein, the impact of acute stress (AS) occurring immediately before TBI is investigated. For this, a mouse model of restraint stress and TBI was employed, and their influence on behavior and gene expression in brain regions, the hypothalamic-pituitary-adrenal (HPA) axis, and peripheral organs was analyzed. Results demonstrate that, compared to single AS or TBI exposure, mice treated with AS prior to TBI showed sex-specific alterations in body weight, memory function, and locomotion. The induction of immediate early genes (IEGs, e.g., c-Fos) by TBI was modulated by previous AS in several brain regions. Furthermore, IEG upregulation along the HPA axis (e.g., pituitary, adrenal glands) and other peripheral organs (e.g., heart) was modulated by AS-TBI interaction. Proteomics of plasma samples revealed proteins potentially mediating this interaction. Finally, the deletion of Atf3 diminished the TBI-induced induction of IEGs in peripheral organs but left them largely unaltered in the brain. In summary, AS immediately before brain injury affects the brain and, to a strong degree, also responses in peripheral organs.
Keyphrases
- traumatic brain injury
- gene expression
- brain injury
- severe traumatic brain injury
- resting state
- white matter
- cerebral ischemia
- mouse model
- body weight
- liver failure
- functional connectivity
- stress induced
- dna methylation
- mild traumatic brain injury
- subarachnoid hemorrhage
- newly diagnosed
- chemotherapy induced
- drug induced
- cell proliferation
- ejection fraction
- transcription factor
- mass spectrometry
- metabolic syndrome
- type diabetes
- chronic kidney disease
- multiple sclerosis
- oxidative stress
- high glucose
- acute respiratory distress syndrome
- genome wide
- adipose tissue
- heat stress
- endothelial cells
- extracorporeal membrane oxygenation
- skeletal muscle
- atomic force microscopy
- single molecule