4.2 Article

The Specific Protein Kinase R (PKR) Inhibitor C16 Protects Neonatal Hypoxia-Ischemia Brain Damages by Inhibiting Neuroinflammation in a Neonatal Rat Model

期刊

MEDICAL SCIENCE MONITOR
卷 22, 期 -, 页码 5074-5081

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INT SCIENTIFIC INFORMATION, INC
DOI: 10.12659/MSM.898139

关键词

Brain Injuries; eIF-2 Kinase; Hypoxia-Ischemia, Brain; Infant, Newborn; Neuroprotective Agents

资金

  1. National Natural Science Foundation of China [81371219]
  2. Shanghai Health Bureau Scientific Research Foundation [201440440]

向作者/读者索取更多资源

Background: Brain injuries induced by hypoxia-ischemia in neonates contribute to increased mortality and lifelong neurological dysfunction. The specific PKR inhibitor C16 has been previously demonstrated to exert a neuroprotective role in adult brain injuries. However, there is no recent study available concerning its protective role in hypoxia-ischemia-induced immature brain damage. Therefore, we investigated whether C16 protects against neonatal hypoxia-ischemia injuries in a neonatal rat model. Material/Methods: Postnatal day 7 (P7) rats were used to establish classical hypoxia-ischemia animal models, and C16 postcon-ditioning with 100 mu g/kg was performed immediately after hypoxia. Western blot analysis was performed to quantify the phosphorylation of the PKR at 0 h, 3 h, 6 h, 12 h, 24 h, and phosphorylation of NF-kappa B 24h after hypoxia exposure. The TTC stain for infarction area and TUNEL stain for apoptotic cells were assayed 24 h after the brain hypoxia. Gene expression of IL-1 beta, IL-6, and TNF-alpha was performed at 3 h, 6 h, 12 h, and 24 h. Results: The level of PKR autophosphorylation was increased dramatically, especially at 3 h (C16 group vs. HI group, P<0.01). Intraperitoneal C16 administration reduced the infarct volume and apoptosis ratio after this insult (C16 group vs. HI group<0.01), and C16 reduced proinflammatory cytokines mRNA expression, partly through inhibiting NF-kappa B activation (C16 group vs. HI group<0.05). Conclusions: C16 can protect immature rats against hypoxia-ischemia-induced brain damage by modulating neuroinflammation.

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