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首页> 外文期刊>Translational research: the journal of laboratory and clinical medicine >Hepcidin attenuates the iron-mediated secondary neuronal injury after intracerebral hemorrhage in rats
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Hepcidin attenuates the iron-mediated secondary neuronal injury after intracerebral hemorrhage in rats

机译:Hepcidin在大鼠中脑出血后衰减铁介质的二次神经元损伤

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Iron plays a key role in secondary neuronal injury after intracerebral hemorrhage (ICH), and hepcidin is able to reduce brain iron in iron-overloaded rats by down regulating iron transport proteins including ferroportin 1 and transferrin receptor 1. These led us to hypothesize that hepcidin might reduce iron-mediated neurotoxicity by inhibiting iron accumulation in ICH brain. Here, we examined effects of Ad-hepcidin (hepcidin expression adenovirus) on the nonheme iron contents, expression of hepcidin, ferritin and iron transport proteins, neuronal cell survival, water contents in the brain and/or cerebrospinal fluid (CSF), and ICH-induced apoptosis, neurological deficit by RT-PCR, Western blot analysis, NeuN Immunofluorescence, TUNEL, Fluoro-Jade B staining, behavioral performance and Morris water-maze tests in 510 rats. We demonstrated that hepcidin could significantly suppress the ICH-induced increase in iron and ferritin in brain tissues and CSF by inhibiting expression of iron transport proteins, increase neuronal survival by attenuating ICH-induced apoptosis, reactive oxygen species, neurodegeneration and brain edema, as well as effectively improve ICH-induced behavioral and cognitive deficit in rats. The findings collectively showed that hepcidin could effectively attenuate iron-mediated secondary neuronal injury after ICH in rats. This naturally existing protein can potentially be developed into a therapeutic drug for the treatment of ICH patients.
机译:铁在脑出血(ICH)后的继发性神经元损伤中起着关键作用,hepcidin能够通过下调铁转运蛋白包括铁转运蛋白1和转铁蛋白受体1来降低铁超载大鼠的脑铁含量。这使我们推测,hepcidin可能通过抑制脑出血患者脑内铁的积累来降低铁介导的神经毒性。在这里,我们通过RT-PCR、Western blot分析、NeuN免疫荧光、TUNEL、Fluoro Jade B染色检测了Ad-hepcidin(hepcidin expression adenovirus)对非血红素铁含量、hepcidin、铁蛋白和铁转运蛋白的表达、神经元细胞存活率、脑和/或脑脊液(CSF)中的含水量以及ICH诱导的细胞凋亡、神经功能缺损的影响,510只大鼠的行为表现和Morris水迷宫测试。我们证明,hepcidin可以通过抑制铁转运蛋白的表达,显著抑制脑出血诱导的脑组织和脑脊液中铁和铁蛋白的增加,通过减轻脑出血诱导的细胞凋亡、活性氧、神经退行性变和脑水肿,提高神经元存活率,并有效改善脑出血诱导的大鼠行为和认知缺陷。这些结果共同表明,hepcidin可以有效地减轻大鼠脑出血后铁介导的继发性神经元损伤。这种天然存在的蛋白质有可能发展成为治疗脑出血患者的治疗药物。

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