延迟脱髓鞘和巨噬细胞侵袭:脊髓损伤中继发性细胞损伤的候选。

A R Blight
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引用次数: 327

摘要

本文综述了近年来关于猫实验性脊髓损伤(SCI)的慢性形态学和生理学的研究,并概述了他们的结论。特别是,病变慢性髓鞘发育异常的变化在很大程度上与损伤强度无关,提示继发性病理起源。新的形态计量学研究亚急性发展的挫伤病变描述。利用电子显微镜和光镜对有髓鞘的轴突进行线样取样,我们发现,最初损伤后存活的轴突脱髓鞘主要发生在挫伤后2至7天,而在头2天内退化的轴突中,髓鞘的溶解速度要快得多。在2-7天的相同时间间隔内,病灶中心表面完整的轴突数量减少了2倍或更多。这种继发性病理与巨噬细胞密集侵袭病变并吞噬最初出血性坏死残留的膜状碎片相一致。结论是,脊髓创伤后炎症应作为慢性缺陷的可能因素进行更详细的研究。此外,这些数据强调了定义继发性损伤的性质、发生时间和比例意义的重要性,以便评估那些试图区分急性继发性病理生理与原发性退行性过程的研究和假设。
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Delayed demyelination and macrophage invasion: a candidate for secondary cell damage in spinal cord injury.

Recent studies of the chronic morphology and physiology of experimental spinal cord injury (SCI) in the cat are reviewed and their conclusions outlined. In particular, variations in chronic dysmyelination of the lesion have been found to be largely independent of injury intensity, suggesting a secondary pathologic origin. New morphometric studies of the subacute development of contusion lesions are described. Using electron microscopy and light microscopic line-sampling of myelinated axons, it was found that demyelination of axons that survived the initial injury occurred largely between 2 and 7 days after contusion and did not accompany the much more rapid dissolution of myelin from those axons that degenerated within the first 2 days. The number of apparently intact axons at the center of the lesion declined by a factor of 2 or more in the same interval of 2-7 days. This secondary pathology was coincident with dense invasion of the lesion by macrophages and their phagocytosis of the membraneous debris remaining from the initial hemorrhagic necrosis. It is concluded that posttraumatic inflammation in the spinal cord should be investigated in more detail as a possible contributor to chronic deficits. In addition, these data emphasize the importance of defining the nature, time of occurrence, and proportional significance of secondary damage in order to evaluate those studies and hypotheses that attempt to differentiate acute secondary pathophysiology from primary degenerative processes.

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