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.

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.

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