A novel Nrf2 activator, RS9, attenuates secondary brain injury after intracerebral hemorrhage in sub-acute phase

被引:32
作者
Sugiyama, Tomoki [1 ]
Imai, Takahiko [1 ]
Nakamura, Shinsuke [1 ]
Yamauchi, Keita [2 ]
Sawada, Shigenobu [3 ]
Shimazawa, Masamitsu [1 ]
Hara, Hideaki [1 ]
机构
[1] Gifu Pharmaceut Univ, Dept Biofunct Evaluat, Mol Pharmacol, 1-25-4 Daigaku Nishi, Gifu 5011196, Japan
[2] Toyohashi Med Ctr, Dept Neurosurg, Toyohashi, Aichi 4408510, Japan
[3] Matsunami Gen Hosp, Dept Neurosurg, 185-1 Dendai, Gifu 5016062, Japan
关键词
Heme oxygenase-1; Intracerebral hemorrhage; Nrf2; Oxidative stress; CENTRAL-NERVOUS-SYSTEM; DIMETHYL FUMARATE; ISCHEMIA-REPERFUSION; KEAP1/NRF2; PATHWAY; OXIDATIVE STRESS; NEUROPROTECTION; INVOLVEMENT; DAMAGE; TRANSFORMATION; PERMEABILITY;
D O I
10.1016/j.brainres.2018.08.021
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The poor prognosis of intracranial hemorrhage (ICH) is attributed to secondary brain injury (SBI), which is caused by oxidative stress. Blood components induce reactive oxygen species (ROS) over-production and cause cytotoxicity. We focused on the antioxidant system and investigated nuclear factor-erythroid 2-related factor 2 (Nrf2), which is a transcription factor that controls several antioxidant enzymes. We examined the effects of a novel Nrf2 activator, RS9, on SBI after ICH. ICH was induced by injecting autologous blood collected from the jugular vein (25 mu L) into the striatum of mice. RS9 (0.2 mg/kg, i.p.) was administrated 0, 24, and 48 h after the induction of ICH. Using the ICH model, we measured brain edema, neurological function, neuronal damage and antioxidant proteins expression. We then investigated the mechanisms responsible for the effects of RS9 in vitro using the SH-SY5Y cell line. We used zinc protoporphyrin (ZnPP), a heme oxygenase-1 (HO-1) inhibitor, to elucidate the relationship between HO-1 expression and cell death in vitro in a hemin injury model. RS9 decreased brain edema, improved neurological deficits, decreased neuronal damage area and up-regulated HO-1 and superoxide dismutase 1 (SOD) expressions in the ICH mouse model. RS9 also suppressed neuronal cell death and ROS over-production in vitro. These protective effects were cancelled by the ZnPP co-treatment. Our results suggest that the activation of Nrf2 by RS9 exerts neuroprotective effects that are mediated by the attenuation of oxidative stress, and also that RS9 is an effective therapeutic candidate for the treatment for SBI after ICH.
引用
收藏
页码:137 / 145
页数:9
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