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Molecular and cellular mechanisms underlying the role of blood vessels in spinal cord injury and repair

机译:血管在脊髓损伤和修复中作用的分子和细胞机制

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摘要

Spinal cord injury causes immediate damage of nervous tissue accompanied by the loss of motor and sensory function. The limited self-repair ability of damaged nervous tissue underlies the need for reparative interventions to restore function after spinal cord injury. Blood vessels play a crucial role in spinal cord injury and repair. Injury-induced loss of local blood vessels and a compromised blood–brain barrier contribute to inflammation and ischemia and thus to the overall damage to the nervous tissue of the spinal cord. Lack of vasculature and leaking blood vessels impede endogenous tissue repair and limit prospective repair approaches. A reduction of blood vessel loss and the restoration of blood vessels so that they no longer leak might support recovery from spinal cord injury. The promotion of new blood vessel formation (i.e., angio- and vasculogenesis) might aid repair but also incorporates the danger of exacerbating tissue loss and thus functional impairment. The delicate interplay between cells and molecules that govern blood vessel repair and formation determines the extent of damage and the success of reparative interventions. This review deals with the cellular and molecular mechanisms underlying the role of blood vessels in spinal cord injury and repair.
机译:脊髓损伤会导致神经组织的即时损害,并伴有运动和感觉功能的丧失。受损神经组织的自我修复能力有限,因此需要采取修复性干预措施以恢复脊髓损伤后的功能。血管在脊髓损伤和修复中起着至关重要的作用。损伤引起的局部血管丢失和受损的血脑屏障会导致炎症和局部缺血,从而对脊髓神经组织造成整体损害。缺乏脉管系统和渗漏的血管阻碍了内源性组织修复,并限制了预期的修复方法。减少血管损失和恢复血管,使它们不再泄漏可能会支持脊髓损伤的恢复。促进新血管形成(即,血管新生和血管生成)可能有助于修复,但也具有加剧组织损失并因此损害功能的危险。控制血管修复和形成的细胞与分子之间的微妙相互作用决定了损伤的程度以及修复干预的成功。这项审查涉及潜在的脊髓损伤和修复中血管作用的细胞和分子机制。

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