| Literature DB >> 33203303 |
Ruchira M Jha1,2, Stefania Mondello3, Helen M Bramlett4, C Edward Dixon5, Deborah A Shear6, W Dalton Dietrich5, Kevin K W Wang7, Zhihui Yang7, Ronald L Hayes8, Samuel M Poloyac9, Philip E Empey10, Audrey D Lafrenaye11, Hong Q Yan5, Shaun W Carlson5, John T Povlishock11, Janice S Gilsdorf6, Patrick M Kochanek1,12.
Abstract
Glibenclamide (GLY) is the sixth drug tested by the Operation Brain Trauma Therapy (OBTT) consortium based on substantial pre-clinical evidence of benefit in traumatic brain injury (TBI). Adult Sprague-Dawley rats underwent fluid percussion injury (FPI; n = 45), controlled cortical impact (CCI; n = 30), or penetrating ballistic-like brain injury (PBBI; n = 36). Efficacy of GLY treatment (10-μg/kg intraperitoneal loading dose at 10 min post-injury, followed by a continuous 7-day subcutaneous infusion [0.2 μg/h]) on motor, cognitive, neuropathological, and biomarker outcomes was assessed across models. GLY improved motor outcome versus vehicle in FPI (cylinder task, p < 0.05) and CCI (beam balance, p < 0.05; beam walk, p < 0.05). In FPI, GLY did not benefit any other outcome, whereas in CCI, it reduced 21-day lesion volume versus vehicle (p < 0.05). On Morris water maze testing in CCI, GLY worsened performance on hidden platform latency testing versus sham (p < 0.05), but not versus TBI vehicle. In PBBI, GLY did not improve any outcome. Blood levels of glial fibrillary acidic protein and ubiquitin carboxyl terminal hydrolase-1 at 24 h did not show significant treatment-induced changes. In summary, GLY showed the greatest benefit in CCI, with positive effects on motor and neuropathological outcomes. GLY is the second-highest-scoring agent overall tested by OBTT and the only drug to reduce lesion volume after CCI. Our findings suggest that leveraging the use of a TBI model-based phenotype to guide treatment (i.e., GLY in contusion) might represent a strategic choice to accelerate drug development in clinical trials and, ultimately, achieve precision medicine in TBI.Entities:
Keywords: cerebral edema; consortium; controlled cortical impact; contusion; fluid percussion injury; glyburide; penetrating ballistic-like brain injury; rat; sulfonylurea receptor-1
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Year: 2020 PMID: 33203303 PMCID: PMC8418525 DOI: 10.1089/neu.2020.7421
Source DB: PubMed Journal: J Neurotrauma ISSN: 0897-7151 Impact factor: 5.269