炎症和脊髓损伤:浸润性白细胞作为损伤和修复过程的决定因素

Alpa Trivedi, Andrea D. Olivas, Linda J. Noble-Haeusslein
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引用次数: 190

摘要

伴随脊髓损伤的免疫反应有助于损伤和修复过程。正是这种二元性是本文的重点。在这里,我们考虑复杂的细胞和分子免疫反应,导致白细胞浸润和神经胶质活化,促进氧化应激和组织损伤,影响伤口愈合,并随后调节运动恢复。改善结果的免疫调节策略正在获得动力,因为正在进行的研究仔细剖析了那些可能介导细胞损伤的途径,而不是那些有利于恢复过程的途径。目前的治疗策略涉及不同的方法,包括早期免疫阻断和免疫细胞接种,以防止早期组织损伤,并支持有利于可塑性的伤口愈合环境。尽管取得了这些进展,关于炎症细胞如何在受伤的脊髓中相互作用仍然存在一些基本问题。这些问题可能是由于我们对动态环境中免疫细胞/神经相互作用的理解有限而产生的,这种相互作用最终导致进行性细胞损伤、脱髓鞘和再生失败。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inflammation and spinal cord injury: Infiltrating leukocytes as determinants of injury and repair processes

The immune response that accompanies spinal cord injury contributes to both injury and reparative processes. It is this duality that is the focus of this review. Here, we consider the complex cellular and molecular immune responses that lead to the infiltration of leukocytes and glial activation, promote oxidative stress and tissue damage, influence wound healing, and subsequently modulate locomotor recovery. Immunomodulatory strategies to improve outcomes are gaining momentum as ongoing research carefully dissects those pathways which likely mediate cell injury from those which favor recovery processes. Current therapeutic strategies address divergent approaches including early immunoblockade and vaccination with immune cells to prevent early tissue damage and support a wound-healing environment that favors plasticity. Despite these advances, there remain basic questions regarding how inflammatory cells interact in the injured spinal cord. Such questions likely arise as a result of our limited understanding of immune cell/neural interactions in a dynamic environment that culminates in progressive cell injury, demyelination, and regenerative failure.

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