BACKGROUND: TGFβ is both neuroprotective and a key immune system modulator and is likely to be an important target for future stroke therapy. The precise function of increased TGF-β1 after stroke is unknown and its pleiotropic nature means that it may convey a neuroprotective signal, orchestrate glial scarring or function as an important immune system regulator. We therefore investigated the time course and cell-specificity of TGFβ signaling after stroke, and whether its signaling pattern is altered by gender and aging. METHODS: We performed distal middle cerebral artery occlusion strokes on 5 and 18 month old TGFβ reporter mice to get a readout of TGFβ responses after stroke in real time. To determine which cell type is the source of increased TGFβ production after stroke, brain sections were stained with an anti-TGFβ antibody, colocalized with markers for reactive astrocytes, neurons, and activated microglia. To determine which cells are responding to TGFβ after stroke, brain sections were double-labelled with anti-pSmad2, a marker of TGFβ signaling, and markers of neurons, oligodendrocytes, endothelial cells, astrocytes and microglia. RESULTS: TGFβ signaling increased 2 fold after stroke, beginning on day 1 and peaking on day 7. This pattern of increase was preserved in old animals and absolute TGFβ signaling in the brain increased with age. Activated microglia and macrophages were the predominant source of increased TGFβ after stroke and astrocytes and activated microglia and macrophages demonstrated dramatic upregulation of TGFβ signaling after stroke. TGFβ signaling in neurons and oligodendrocytes did not undergo marked changes. CONCLUSIONS: We found that TGFβ signaling increases with age and that astrocytes and activated microglia and macrophages are the main cell types that undergo increased TGFβ signaling in response to post-stroke increases in TGFβ. Therefore increased TGFβ after stroke likely regulates glial scar formation and the immune response to stroke.
TGFβ signaling in the brain increases with aging and signals to astrocytes and innate immune cells in the weeks after stroke.
随着年龄增长,大脑中的 TGFβ 信号传导增强,并在中风后的几周内向星形胶质细胞和先天免疫细胞发出信号
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作者:Doyle Kristian P, Cekanaviciute Egle, Mamer Lauren E, Buckwalter Marion S
| 期刊: | Journal of Neuroinflammation | 影响因子: | 10.100 |
| 时间: | 2010 | 起止号: | 2010 Oct 11; 7:62 |
| doi: | 10.1186/1742-2094-7-62 | 研究方向: | 信号转导、细胞生物学 |
| 疾病类型: | 中风 | ||
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