Severe Traumatic Brain Injury (TBI) Modulates the Kinetic Profile of the Inflammatory Response of Markers for Neuronal Damage.
Cora Rebecca SchindlerThomas LustenbergerMathias WoschekPhilipp StörmannDirk HenrichPeter RadermacherIngo MarziPublished in: Journal of clinical medicine (2020)
The inflammatory response plays an important role in the pathophysiology of multiple injuries. This study examines the effects of severe trauma and inflammatory response on markers of neuronal damage. A retrospective analysis of prospectively collected data in 445 trauma patients (Injury Severity Score (ISS) ≥ 16) is provided. Levels of neuronal biomarkers (calcium-binding Protein B (S100b), Enolase2 (NSE), glial fibrillary acidic protein (GFAP)) and Interleukins (IL-6, IL-10) in severely injured patients (with polytrauma (PT)) without traumatic brain injury (TBI) or with severe TBI (PT+TBI) and patients with isolated TBI (isTBI) were measured upon arrival until day 5. S100b, NSE, GFAP levels showed a time-dependent decrease in all cohorts. Their expression was higher after multiple injuries (p = 0.038) comparing isTBI. Positive correlation of marker level after concomitant TBI and isTBI (p = 0.001) was noted, while marker expression after PT appears to be independent. Highest levels of IL-6 and -10 were associated to PT und lowest to isTBI (p < 0.001). In all groups pro-inflammatory response (IL-6/-10 ratio) peaked on day 2 and at a lower level on day 4. Severe TBI modulates kinetic profile of inflammatory response by reducing interleukin expression following trauma. Potential markers for neuronal damage have a limited diagnostic value after severe trauma because undifferentiated increase.
Keyphrases
- inflammatory response
- traumatic brain injury
- severe traumatic brain injury
- trauma patients
- binding protein
- lipopolysaccharide induced
- lps induced
- poor prognosis
- toll like receptor
- early onset
- oxidative stress
- mild traumatic brain injury
- cerebral ischemia
- drug induced
- long non coding rna
- brain injury
- blood brain barrier
- immune response
- neuropathic pain
- anti inflammatory
- machine learning
- electronic health record
- deep learning
- data analysis