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Updated: Jun 21, 2026

A Preclinical Controlled Cortical Impact Model for Traumatic Hemorrhage Contusion and Neuroinflammation
Published on: June 10, 2020
c-Jun N-terminal kinase pathway activation in human and experimental cerebral contusion
Fabrizio Ortolano1, Alessio Colombo, Elisa Roncati Zanier
1Department of Neuroscience, Mario Negri Institute; Università di Milan, Neurosurgical Intensive Care Unit, Department of Anesthesia and Critical Care Medicine, Fondazione IRCCS Ospedale Maggiore Policlinico, Mangiagalli e Regina Elena, Milan, Italy.
Abstract:
The c-Jun N-terminal kinase (JNK) pathway is involved in cell stress and apoptosis. We tested the hypothesis that this pathway plays a role in traumatic brain injury (TBI) by assessing JNK activation in human brain tissues and in brains of mice subjected to controlled cortical impact brain injury. We also assessed the effects of specific inhibition of the JNK pathway by the cell-permeable JNK inhibitor peptide, D-JNKI1, on neurobehavioral function and posttraumatic cell loss in mice. The inhibitor was administered intraperitoneally 10 minutes after injury. The JNK pathway showed robust activation both in human contusion specimens and in injured cortex and hippocampi of TBI-injured mice, 1, 4, and 48 hours after injury. D-JNKI1 treatment significantly improved motor performance at 48 hours and 7 days after injury and reduced the contusion volume compared with saline treatment; the numbers of terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling-positive cells were significantly decreased in the hippocampi of injured mice 48 hours after treatment. Thus, because the JNK pathway is activated after human and experimental TBI and the inhibitor peptide D-JNKI1 affords significant neuroprotection and amelioration of neurobehavioral deficits after experimental TBI, therapeutic targeting of the JNK activation pathway may hold promise for future clinical applications.
Insights
The c-Jun N-terminal kinase (JNK) pathway is activated after traumatic brain injury (TBI). Inhibiting JNK with D-JNKI1 improved neurobehavioral function and reduced cell loss in TBI mouse models.
Area of Science:
- Neuroscience
- Cellular Biology
- Pathology
Background:
- The c-Jun N-terminal kinase (JNK) pathway is implicated in cellular stress and apoptosis.
- Traumatic brain injury (TBI) involves complex cellular responses, including stress and cell death.
Purpose of the Study:
- To investigate the role of the JNK pathway in TBI.
- To evaluate the neuroprotective effects of JNK inhibition in experimental TBI.
Main Methods:
- Assessed JNK activation in human TBI tissues and in a mouse model of TBI (controlled cortical impact).
- Administered the JNK inhibitor peptide D-JNKI1 intraperitoneally 10 minutes post-injury in mice.
- Evaluated neurobehavioral function, contusion volume, and cell death (TUNEL assay) in treated and control mice.
Main Results:
- Robust JNK pathway activation was observed in human TBI specimens and in injured mouse brains at multiple time points post-injury.
- D-JNKI1 treatment significantly improved motor performance and reduced contusion volume in TBI mice.
- A significant decrease in TUNEL-positive cells was noted in the hippocampi of D-JNKI1-treated mice.
Conclusions:
- The JNK pathway is activated following TBI in both humans and experimental models.
- Inhibition of JNK signaling with D-JNKI1 demonstrates significant neuroprotective effects and ameliorates neurobehavioral deficits after TBI.
- Targeting JNK activation represents a potential therapeutic strategy for TBI treatment.

