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首页> 外文期刊>Translational stroke research >Brain Ceruloplasmin Expression After Experimental Intracerebral Hemorrhage and Protection Against Iron-Induced Brain Injury
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Brain Ceruloplasmin Expression After Experimental Intracerebral Hemorrhage and Protection Against Iron-Induced Brain Injury

机译:实验性脑出血后脑刺激性表达及防止铁诱导脑损伤

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Ceruloplasmin (CP) is an essential ferroxidase that is involved in maintaining iron homeostasis by oxidizing toxic ferrous iron (Fe2+) to less-toxic ferric iron (Fe3+). CP has been well studied in many neurodegenerative diseases, but there has not been an in-depth investigation in intracerebral hemorrhage (ICH). This research investigated brain CP expression in rats after ICH and the effect of CP on Fe2+-induced brain injury. This study had two parts: first, rats had injection of autologous blood into the right basal ganglia and the time course of CP expression in the brain examined (protein and mRNA). Second, rats had an injection of either Fe2+ in saline, Fe2+ plus CP in saline, or saline alone into the right basal ganglia. All rats in the second part had T2-weighted magnetic resonance imaging, and behavioral tests before the brains were harvested for immunohistochemistry and Western blotting. We found that CP was expressed on neurons and astrocytes in both cortex and basal ganglia after ICH. The time course showed that ICH induced CP expression increased from 4h to 7days, peaking at day 3. Whether the brain itself can produce CP was confirmed by RT-PCR. Exogenous CP reduced Fe2+-induced T2 lesions, blood-brain barrier disruption, brain cell death, and neurological deficits. These results suggest a role of CP in potentially reducing ICH-induced brain injury.
机译:刺激纤维蛋白(CP)是一种必需的铁脂酶,其参与通过将有毒亚铁铁(Fe2 +)氧化至较低的毒性铁(Fe3 +)来维持铁稳态。 CP在许多神经变性疾病中得到了很好的研究,但在脑出血(ICH)上没有深入调查。本研究在ICH后的大鼠和CP对Fe2 +诱导脑损伤的影响下调查了大脑CP表达。本研究有两部分:首先,大鼠将自体血液注射到右基天甘中,脑中CP表达的时间过程(蛋白质和mRNA)。其次,大鼠在盐水中注射Fe2 +,盐水中的Fe2 +加Cp,或单独盐水进入右基天甘细胞。第二部分中的所有大鼠具有T2加权磁共振成像,并且在收获大脑以进行免疫组织化学和蛋白质印迹之前的行为试验。我们发现CP在ICH之后在皮质和基底神经节的神经元和星形胶质细胞上表达。该时间课程表明,ICH诱导的CP表达从4H增加到7天,第3天达到峰值。如果大脑本身可以通过RT-PCR确认CP。外源CP减少Fe2 +诱导的T2病变,血脑屏障破坏,脑细胞死亡和神经缺陷。这些结果表明CP可能降低ICH诱导的脑损伤的作用。

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