首页> 外文期刊>Scientific reports. >Improved locomotor recovery after contusive spinal cord injury in Bmal1 ?/? mice is associated with protection of the blood spinal cord barrier
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Improved locomotor recovery after contusive spinal cord injury in Bmal1 ?/? mice is associated with protection of the blood spinal cord barrier

机译:在BMA11中患有紫外线脊髓损伤后改善运动恢复?/?小鼠与对血脊髓屏障的保护有关

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The transcription factor BMAL1/ARNTL is a non-redundant component of the clock pathway that regulates circadian oscillations of gene expression. Loss of BMAL1 perturbs organismal homeostasis and usually exacerbates pathological responses to many types of insults by enhancing oxidative stress and inflammation. Surprisingly, we observed improved locomotor recovery and spinal cord white matter sparing in Bmal1?/? mice after T9 contusive spinal cord injury (SCI). While acute loss of neurons and oligodendrocytes was unaffected, Bmal1 deficiency reduced the chronic loss of oligodendrocytes at the injury epicenter 6?weeks post SCI. At 3?days post-injury (dpi), decreased expression of genes associated with cell proliferation, neuroinflammation and disruption of the blood spinal cord barrier (BSCB) was also observed. Moreover, intraspinal extravasation of fibrinogen and immunoglobulins was decreased acutely at dpi 1 and subacutely at dpi 7. Subacute decrease of hemoglobin deposition was also observed. Finally, subacutely reduced levels of the leukocyte marker CD45 and even greater reduction of the pro-inflammatory macrophage receptor CD36 suggest not only lower numbers of those cells but also their reduced inflammatory potential. These data indicate that Bmal1 deficiency improves SCI outcome, in part by reducing BSCB disruption and hemorrhage decreasing cytotoxic neuroinflammation and attenuating the chronic loss of oligodendrocytes.
机译:转录因子BMA1 / ARNT1是调节基因表达昼夜振荡的时钟路径的非冗余分量。 BMAL1钙钙钙体感官稳态,并且通常通过增强氧化应激和炎症来加剧许多类型的损伤的病理反应。令人惊讶的是,我们观察到BMAL1中改善的运动恢复和脊髓白质备受备件?/? T9缺陷脊髓损伤(SCI)后的小鼠。虽然神经元和少突的急性丧失不受影响,但BMA1缺乏减少了在SCI后损伤6α的损伤寡核细胞的慢性丧失。损伤后3-天(DPI),还观察到降低与细胞增殖相关的基因表达,神经炎症和血脊髓屏障(BSCB)的破坏。此外,纤维蛋白原和免疫球蛋白的脊柱脊髓植物急性化急性化急性化,并且亚缺陷在DPI 7.亚止咳蛋白沉积的亚急性降低。最后,降低白细胞标志物CD45水平甚至更低的促炎巨噬细胞受体CD36表明这些细胞的数量不仅较低,而且还表明其降低的炎症潜力。这些数据表明,BMA1缺乏可改善SCI结果,部分通过降低BSCB破坏和出血,降低细胞毒性神经炎症并衰减少突茂细胞的慢性丧失。

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