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Involvement of pro-inflammatory cytokines and microglia in an age-associated neurodegeneration model, the SAMP10 mouse.

机译:促炎性细胞因子和小胶质细胞参与与年龄相关的神经变性模型SAMP10小鼠。

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The SAMP10 mouse strain is a model of brain aging in which senescence is characterized by cerebral atrophy and neurodegeneration phenotypes. To investigate the role of neuroinflammation in the age-associated neurodegeneration of SAMP10 mice, we assessed the expression of several cytokines and chemokines in the atrophy-prone brain region of SAMP10, and control, SAMR1 mice, which show a normal aging process. We also studied morphological changes in microglia with advancing age in atrophied regions. The expression of IL-1beta and IFN-gamma mRNA was about 2-fold greater in SAMP10 mice as compared to SAMR1 mice throughout their life span. The expression of IL-6 mRNA was 2.0-fold greater in SAMP10 mice as compared to SAMR1 mice at 14 months of age, although there was no difference at 3 months of age. Fourteen-month-old mice had a 2.1-fold greater expression of TNF-alpha mRNA than 3-month-old mice in both strains. The expression of MCP-1 mRNA was greater in SAMP10 mice than SAMR1 mice, and tended to increase with advancing age. Activated microglia were rarely observed in both strains at 3 months of age. At 14 months of age, however, SAMP10 mice had a 5.6-fold greater number of activated microglia than SAMR1 mice. The aforementioned results suggest the presence of a higher pro-inflammatory status in the atrophy-prone brain region of SAMP10 mice as compared to SAMR1 mice. Neuroinflammation is a possible mechanism of age-associated neurodegeneration in SAMP10 mice.
机译:SAMP10小鼠品系是脑衰老的模型,其中衰老的特征在于脑萎缩和神经退行性表型。为了研究神经炎症在SAMP10小鼠与年龄相关的神经退行性变中的作用,我们评估了SAMP10易于萎缩的大脑区域和对照组SAMR1小鼠中几种细胞因子和趋化因子的表达,显示正常衰老过程。我们还研究了萎缩地区随年龄增长的小胶质细胞的形态变化。在整个生命周期中,与SAMR1小鼠相比,SAMP10小鼠中IL-1beta和IFN-γmRNA的表达约高2倍。在14个月大时,与SAMR1小鼠相比,SAMP10小鼠中IL-6 mRNA的表达高2.0倍,尽管在3个月大时没有差异。在两个品系中,十四个月大的小鼠的TNF-αmRNA表达比三个月大的小鼠高2.1倍。 SAMP10小鼠中MCP-1 mRNA的表达高于SAMR1小鼠,并且随着年龄的增长趋于增加。两种菌株在3个月大时很少观察到活化的小胶质细胞。然而,在14个月大时,SAMP10小鼠的活化小胶质细胞数量是SAMR1小鼠的5.6倍。前述结果表明,与SAMR1小鼠相比,SAMP10小鼠的萎缩倾向性脑区域中存在较高的促炎状态。神经炎症是SAMP10小鼠中与年龄相关的神经变性的可能机制。

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