Cyclosporine Treatment in Traumatic Brain Injury: Operation Brain Trauma Therapy
C Edward Dixon1, Helen M Bramlett2,3, W Dalton Dietrich2
11 Department of Neurological Surgery, Brain Trauma Research Center, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania.
Abstract:
Operation Brain Trauma Therapy (OBTT) is a consortium of investigators using multiple pre-clinical models of traumatic brain injury (TBI) to bring acute therapies to clinical trials. To screen therapies, we used three rat models (parasagittal fluid percussion injury [FPI], controlled cortical impact [CCI], and penetrating ballistic-like brain injury [PBBI]). We report results of the third therapy (cyclosporin-A; cyclosporine; [CsA]) tested by OBTT. At each site, rats were randomized to treatment with an identical regimen (TBI + vehicle, TBI + CsA [10 mg/kg], or TBI + CsA [20 mg/kg] given intravenously at 15 min and 24 h after injury, and sham). We assessed motor and Morris water maze (MWM) tasks over 3 weeks after TBI and lesion volume and hemispheric tissue loss at 21 days. In FPI, CsA (10 mg/kg) produced histological protection, but 20 mg/kg worsened working memory. In CCI, CsA (20 mg/kg) impaired MWM performance; surprisingly, neither dose showed benefit on any outcome. After PBBI, neither dose produced benefit on any outcome, and mortality was increased (20 mg/kg) partly caused by the solvent vehicle. In OBTT, CsA produced complex effects with histological protection at the lowest dose in the least severe model (FPI), but only deleterious effects as model severity increased (CCI and PBBI). Biomarker assessments included measurements of glial fibrillary acidic protein (GFAP) and ubiquitin C-terminal hydrolase-L1 (UCH-L1) in blood at 4 or 24 h after injury. No positive treatment effects were seen on biomarker levels in any of the models, whereas significant increases in 24 h UCH-L1 levels were seen with CsA (20 mg/kg) after CCI and 24 h GFAP levels in both CsA treated groups in the PBBI model. Lack of behavioral protection in any model, indicators of toxicity, and a narrow therapeutic index reduce enthusiasm for clinical translation.
Insights
Cyclosporin-A showed limited neuroprotection in traumatic brain injury (TBI) rat models, with higher doses causing cognitive deficits and increased mortality, reducing its clinical translation potential.
Area of Science:
- Neuroscience
- Pharmacology
- Traumatic Brain Injury Research
Background:
- Traumatic brain injury (TBI) is a significant cause of death and disability.
- Developing effective acute therapies for TBI remains a critical challenge.
- Operation Brain Trauma Therapy (OBTT) screens potential TBI treatments in pre-clinical models.
Purpose of the Study:
- To evaluate the efficacy and safety of cyclosporin-A (CsA) as an acute therapy for TBI.
- To assess CsA's effects across different TBI severity models.
- To determine CsA's impact on behavioral outcomes, lesion volume, and biomarkers.
Main Methods:
- Utilized three distinct rat models of TBI: fluid percussion injury (FPI), controlled cortical impact (CCI), and penetrating ballistic-like brain injury (PBBI).
- Administered CsA intravenously at 10 mg/kg and 20 mg/kg at 15 minutes and 24 hours post-injury.
- Assessed motor function, spatial learning (Morris water maze), lesion volume, and serum biomarkers (GFAP, UCH-L1).
Main Results:
- CsA (10 mg/kg) showed histological protection in the mildest FPI model, but worsened working memory at 20 mg/kg.
- In more severe CCI and PBBI models, CsA failed to provide any behavioral or histological benefits.
- Higher CsA doses increased mortality (PBBI) and negatively impacted biomarkers (UCH-L1 in CCI, GFAP in PBBI), indicating toxicity.
Conclusions:
- Cyclosporin-A exhibits a narrow therapeutic index for TBI, with efficacy limited to the least severe injury model.
- Deleterious effects, including cognitive impairment and increased mortality, were observed in more severe TBI models.
- The complex and often adverse effects of CsA reduce enthusiasm for its clinical translation in acute TBI treatment.


