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首页> 外文期刊>Journal of neurotrauma >Effects of moderate hypothermia on extracellular lactic acid and amino acids after severe compression injury of rat spinal cord.
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Effects of moderate hypothermia on extracellular lactic acid and amino acids after severe compression injury of rat spinal cord.

机译:亚低温对大鼠脊髓严重压迫损伤后细胞外乳酸和氨基酸的影响。

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We evaluated in rats, the effect of moderate hypothermia (30-31 degrees C) on extracellular levels of amino acids, with special emphasis on the excitatory amino acids (EAAs) glutamate and aspartate, lactate and pyruvate, after severe spinal cord compression. A laminectomy of Th7 and Th8 was made. A probe was inserted in a dorsal horn and microdialysis was performed for 1.5 h before and 4 h after applying severe compression for 5 min. Dialysate samples were collected at intervals of 10 min and analyzed by high-performance liquid chromatography. In normothermic (37.5 degrees C) animals there was a several-fold rise of glutamate that peaked in the first 10 min fraction after trauma. Hypothermic animals showed a similar increase after trauma, which was statistically significant until 20 min after injury. The level of glutamate was significantly higher in hypothermic animals from 20 to 70 min after injury, compared with normothermic animals. Aspartate also showed a marked increase following injury. The peakconcentration was similar for both groups, whereas recovery was delayed in hypothermic animals. There was no significant difference between the normothermic and hypothermic animals for arginine, taurine, alanine, glutamine, histadine, glycine, threonine, tyrosine, and asparagine. No significant effect of hypothermia on lactate or lactate/pyruvate was noted. However, the mean level of lactate tended to be lower and recovery was quicker in hypothermic animals. The results of the present study suggest that moderate hypothermia does not attenuate extracellular accumulation of EAAs or markedly improve energy metabolism in our model. Instead, our findings raise the possibility that moderate hypothermia prolongs the duration of glutamate receptor overactivation. Since hypothermia effectively attenuates glutamate release in CNS and spinal cord ischemia models our results suggest different mechanisms of extracellular accumulation of EAAs in ischemia and trauma.
机译:我们在大鼠中评估了中度低温(30-31摄氏度)对细胞外氨基酸水平的影响,特别强调了严重脊髓压迫后谷氨酸和天冬氨酸,乳酸和丙酮酸的兴奋性氨基酸(EAAs)。进行了Th7和Th8的椎板切除术。将探针插入背角并在施加5分钟剧烈压缩之前和之后4小时进行微透析。每隔10分钟收集一次透析液样品,并通过高效液相色谱进行分析。在常温(37.5摄氏度)动物中,谷氨酸盐升高了几倍,在创伤后的最初10分钟内达到峰值。体温过低的动物在创伤后表现出相似的增加,直到受伤后20分钟才具有统计学意义。与正常体温动物相比,在低温后20至70分钟内,低温动物的谷氨酸水平显着较高。损伤后天冬氨酸也显示出明显增加。两组的峰值浓度相似,而低温动物的恢复延迟。在常温和低温动物中,精氨酸,牛磺酸,丙氨酸,谷氨酰胺,组胺,甘氨酸,苏氨酸,酪氨酸和天冬酰胺的差异均无统计学意义。没有发现低温对乳酸盐或乳酸盐/丙酮酸盐有显着影响。然而,低温动物的平均乳酸水平趋于降低,恢复更快。本研究的结果表明,适度的体温过低不会减弱EAA的细胞外积聚或明显改善我们模型中的能量代谢。取而代之的是,我们的发现增加了适度的低温延长谷氨酸受体过度活化持续时间的可能性。由于低温有效地减轻了中枢神经系统和脊髓缺血模型中谷氨酸的释放,因此我们的结果表明,在缺血和创伤中EAA的细胞外蓄积机制不同。

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