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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Constitutive overexpression of human erythropoietin protects the mouse retina against induced but not inherited retinal degeneration.
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Constitutive overexpression of human erythropoietin protects the mouse retina against induced but not inherited retinal degeneration.

机译:人促红细胞生成素的组成型过表达保护小鼠视网膜免于诱发但不是遗传性视网膜变性。

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摘要

Elevation of erythropoietin (Epo) concentrations by hypoxic preconditioning or application of recombinant human Epo (huEpo) protects the mouse retina against light-induced degeneration by inhibiting photoreceptor cell apoptosis. Because photoreceptor apoptosis is also the common path to cell loss in retinal dystrophies such as retinitis pigmentosa (RP), we tested whether high levels of huEpo would reduce apoptotic cell death in two mouse models of human RP. We combined the two respective mutant mouse lines with a transgenic line (tg6) that constitutively overexpresses huEpo mainly in neural tissues. Transgenic expression of huEpo caused constitutively high levels of Epo in the retina and protected photoreceptors against light-induced degeneration; however, the presence of high levels of huEpo did not affect the course or the extent of retinal degeneration in a light-independent (rd1) and a light-accelerated (VPP) mouse model of RP. Similarly, repetitive intraperitoneal injections of recombinant huEpo did not protect the retina in the rd1 and the VPP mouse. Lack of neuroprotection by Epo in the two models of inherited retinal degeneration was not caused by adaptational downregulation of Epo receptor. Our results suggest that apoptotic mechanisms during acute, light-induced photoreceptor cell death differ from those in genetically based retinal degeneration. Therapeutic intervention with cell death in inherited retinal degeneration may therefore require different drugs and treatments.
机译:通过低氧预处理或应用重组人Epo(huEpo)来提高促红细胞生成素(Epo)浓度,可以通过抑制感光细胞凋亡来保护小鼠视网膜免受光诱导的变性。由于光感受器凋亡也是视网膜营养不良(如色素性视网膜炎(RP))中细胞丢失的常见途径,因此我们测试了高水平的huEpo是否会在人类RP的两种小鼠模型中减少凋亡性细胞死亡。我们将两个各自的突变小鼠品系与主要在神经组织中组成型过表达huEpo的转基因品系(tg6)结合在一起。 huEpo的转基因表达引起视网膜中Epo的组成型高水平表达,并保护感光细胞免受光诱导的变性;但是,高水平的huEpo的存在并不会影响RP的光独立(rd1)和光加速(VPP)小鼠模型的视网膜变性的过程或程度。同样,重复性腹膜内注射重组huEpo不能保护rd1和VPP小鼠的视网膜。在两种遗传性视网膜变性模型中,Epo缺乏神经保护作用不是由Epo受体的适应性下调引起的。我们的结果表明,急性,光诱导的感光细胞死亡过程中的凋亡机制与基于遗传的视网膜变性中的那些不同。因此,遗传性视网膜变性中细胞死亡的治疗干预可能需要不同的药物和治疗方法。

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