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猫脊髓受压创伤后的脊髓能量代谢

Spinal cord energy metabolism following compression trauma to the feline spinal cord.

作者信息

Anderson D K, Means E D, Waters T R, Spears C J

出版信息

J Neurosurg. 1980 Sep;53(3):375-80. doi: 10.3171/jns.1980.53.3.0375.

Abstract

The purpose of this study was to determine the spinal cord metabolic state for 24 hours after compression trauma to the feline spinal cord. Cats were anesthetized with pentobarbital and injured by placing a 190-gm weight on the spinal cord for 5 minutes. Biochemical analysis of the injured segment revealed a significant depletion in the levels of adenosine triphosphate (ATP), phosphocreatine (P-creatine), and total adenylates for the entire 24-hour recovery period. Glucose levels initially declined, but by 1 hour had normalized, and at 8 and 24 hours were significantly supranormal. The lactate/pyruvate ratio and tissue lactate concentrations increased four and five and half times, respectively, for the first 4 hours after injury. Between 8 and 24 hours, lactate levels remained elevated, whereas the lactate/pyruvate ratio declined to contol levels as the result of a significant rise in the tissue pyruvate concentration. This sequence of metabolic changes suggested that metabolism was probably not homogeneous throughout the injured segment, and that tissue metabolic rate was depressed for the initial 4 hours after trauma then increased in metabolically active tissue for the remainder of the 24-hour recovery period. This model of spinal cord trauma results in a severe, prolonged ischemia and metabolic injury to the affected tissue. Whether these metabolic changes results from or cause the tissue damage and irreversible paraplegia associated with this type of spinal cord injury remains to be determined.

摘要

本研究的目的是确定猫脊髓遭受压迫性创伤后24小时内的脊髓代谢状态。猫用戊巴比妥麻醉,通过在脊髓上放置一个190克的重物持续5分钟造成损伤。对损伤节段的生化分析显示,在整个24小时的恢复期间,三磷酸腺苷(ATP)、磷酸肌酸(P-肌酸)和总腺苷酸水平显著降低。葡萄糖水平最初下降,但在1小时时恢复正常,在8小时和24小时时显著高于正常水平。损伤后的最初4小时内,乳酸/丙酮酸比值和组织乳酸浓度分别增加了4倍和5.5倍。在8至24小时之间,乳酸水平持续升高,而由于组织丙酮酸浓度显著升高,乳酸/丙酮酸比值降至对照水平。这种代谢变化序列表明,损伤节段的代谢可能并不均匀,创伤后的最初4小时组织代谢率降低,然后在24小时恢复期间的剩余时间里,代谢活跃组织中的代谢率增加。这种脊髓创伤模型会导致受影响组织出现严重、持久的缺血和代谢损伤。这些代谢变化是由这种类型的脊髓损伤相关的组织损伤和不可逆截瘫引起的,还是导致了这些损伤,仍有待确定。

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