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首页> 外文期刊>The Journal of Comparative Neurology >Genetic influences on cellular reactions to spinal cord injury: activation of macrophages/microglia and astrocytes is delayed in mice carrying a mutation (WldS) that causes delayed Wallerian degeneration.
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Genetic influences on cellular reactions to spinal cord injury: activation of macrophages/microglia and astrocytes is delayed in mice carrying a mutation (WldS) that causes delayed Wallerian degeneration.

机译:遗传因素对脊髓损伤的细胞反应的影响:携带突变(WldS)的小鼠中巨噬细胞/小胶质细胞和星形胶质细胞的激活被延迟,该突变导致Wallerian变性延迟。

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摘要

Reactive changes in macrophages/microglia and astrocytes were evaluated following spinal cord injury in normal mice of the C57BL/6J strain and in mice carrying a mutation (WldS) which delays the onset of Wallerian degeneration in damaged axons. Crush injuries were produced at the T8 level by using an extradural approach; animals were allowed to survive for 2 days to 12 weeks, and spinal cords were prepared for immunocytochemistry using antibodies against Mac1 and glial fibrillary acidid protein (GFAP). In normal mice, Mac1-positive macrophages accumulated at the injury site by 4 days and immunostaining of these cells peaked at 6-8 days. Cells in the gray matter near the crush site and in the ascending dorsal column also exhibited increased Mac1 staining that was prominent at 1 week and remained high at 2-4 weeks. In mice carrying the WldS mutation, the accumulation of macrophages at the injury site and the increase in immunostaining of these cells were delayed, as were the increases in immunostaining in the gray matter and dorsal columns. Both normal and mutant mice exhibited pronounced increases in glial fibrillary acidic protein immunostaining at the edge of the crush site and for some distance both rostral and caudal to the injury; increased immunostaining was also prominent along the ascending dorsal columns. The center of the crush site, which contained connective tissue, remained completely unstained for GFAP. In normal mice, immunostaining for GFAP reached a peak at 1 week postinjury and then declined. In mice carrying the WldS mutation, increases in GFAP immunostaining did not reach a peak until 2-3 weeks postinjury. These results indicate that activation of macrophages, microglia, and astrocytes is delayed and prolonged in mice carrying the WldS mutation.
机译:在脊髓损伤后,评估了C57BL / 6J品系正常小鼠和携带突变(WldS)的小鼠脊髓损伤后巨噬细胞/小胶质细胞和星形胶质细胞的反应性变化,该突变可延迟受损轴突中沃勒变性的发作。使用硬膜外方法在T8级产生挤压伤;使动物存活2天至12周,并使用针对Mac1和神经胶质原纤维酸性蛋白(GFAP)的抗体制备用于免疫细胞化学的脊髓。在正常小鼠中,Mac1阳性巨噬细胞在损伤部位累积4天,而这些细胞的免疫染色在6-8天达到峰值。粉碎部位附近的灰质中的细胞以及背侧圆柱中的细胞也显示Mac1染色增加,Mac1染色在1周时很明显,在2-4周时仍然很高。在携带WldS突变的小鼠中,巨噬细胞在损伤部位的积累和这些细胞免疫染色的增加被延迟,灰质和背柱中免疫染色的增加也被延迟。正常小鼠和突变小鼠在挤压部位的边缘以及对损伤的鼻端和尾端都有一定距离时,神经胶质纤维酸性蛋白免疫染色均明显增加。沿背侧柱上升,免疫染色也很明显。含有结缔组织的挤压部位的中心对于GFAP仍然完全没有染色。在正常小鼠中,GFAP的免疫染色在受伤后1周达到峰值,然后下降。在携带WldS突变的小鼠中,GFAP免疫染色的增加直到受伤后2-3周才达到峰值。这些结果表明,在携带WldS突变的小鼠中,巨噬细胞,小胶质细胞和星形胶质细胞的激活被延迟和延长。

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