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Biomaterials for revascularization and immunomodulation after spinal cord injury

机译:脊髓损伤后血运重建和免疫调节的生物材料

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摘要

Spinal cord injury (SCI) causes immediate damage to the nervous tissue accompanied by loss of motor and sensory function. The limited self-repair competence of injured nervous tissue underscores the need for reparative interventions to recover function after SCI. The vasculature of the spinal cord plays a crucial role in SCI and repair. Ruptured and sheared blood vessels in the injury epicenter and blood vessels with a breached blood-spinal cord barrier (BSCB) in the surrounding tissue cause bleeding and inflammation, which contribute to the overall tissue damage. The insufficient formation of new functional vasculature in and near the injury impedes endogenous tissue repair and limits the prospect of repair approaches. Limiting the loss of blood vessels, stabilizing the BSCB, and promoting the formation of new blood vessels are therapeutic targets for spinal cord repair. Inflammation is an integral part of injury-mediated vascular damage, which has deleterious and reparative consequences. Inflammation and the formation of new blood vessels are intricately interwoven. Biomaterials can be effectively used for promoting and guiding blood vessel formation or modulating the inflammatory response after SCI, thereby governing the extent of damage and the success of reparative interventions. This review deals with the vasculature after SCI, the reciprocal interactions between inflammation and blood vessel formation, and the potential of biomaterials to support revascularization and immunomodulation in damaged spinal cord nervous tissue.
机译:脊髓损伤(SCI)导致紧急损伤神经组织伴随着电机和感官功能的损失。受伤神经组织的有限自修复能力强调了需要在SCI后恢复功能的恢复功能。脊髓的脉管系统在SCI和修复中起着至关重要的作用。在周围组织中具有突破血液脊髓屏障(BSCB)的损伤震中和血管中的破裂和剪切血管导致出血和炎症,这有助于整体组织损伤。在损伤中和附近的新功能脉管系统形成不充分地阻碍了内源组织修复并限制了修复方法的前景。限制血管损失,稳定BSCB,促进新血管的形成是脊髓修复的治疗靶标。炎症是损伤介导的血管损伤的一个组成部分,具有有害和严重的后果。炎症和新血管的形成是错综复杂的。生物材料可以有效地用于促进和引导血管形成或调节SCI后的炎症反应,从而有助于损害的程度和损害干预的成功。本综述涉及SCI后的脉管系统,炎症和血管形成之间的互易相互作用,以及生物材料的潜力,以支持受损脊髓神经组织中的血运重建和免疫调节。

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