首页> 外文期刊>Acta Neurochirurgica >Differences in cell death between high and low energy brain injury in adult rats.
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Differences in cell death between high and low energy brain injury in adult rats.

机译:成年大鼠高能和低能脑损伤之间细胞死亡的差异。

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BACKGROUND: Traumatic brain damage is dependent on energy transfer to the brain at impact. Different injury mechanisms may cause different types of brain injury. It is, however, unknown if the relative distribution between apoptotic cell-death and necrotic cell- death in different populations of brain cells varies depending on energy transfer. METHOD: Experimental contusions were produced with a modified weight drop onto the exposed dura of rats. Animals were divided into two groups. They received a weight drop from two different heights to vary energy transfer to be higher or lower. Animals were sacrificed at 24 hours post injury (1 DPI) or 6 days (6 DPI); brains were frozen and processed for TUNEL (TdT mediated dUTP nick end labelling), light microscopy and immunochemistry. FINDINGS: The total number of TUNEL positive cells was higher in the higher energy group on the first day after the injury. At the same time point, relatively fewer cells were apoptotic than necrotic, while relatively more glial cells than neurons were TUNEL-positive in higher energy trauma. At 6 day after the injury fewer cells were TUNEL positive and there were no longer significant differences between the high and low energy groups. CONCLUSIONS: Increasing energy transfer in a model for brain contusion demonstrated qualitative and quantitative changes in the pattern of cell death. This complexity must be considered when evaluating brain-protection as treatment results may vary depending on which cellular population and which mechanism of cell death is treated under the exact experimental and clinical conditions.
机译:背景:脑外伤取决于撞击时能量向大脑的转移。不同的损伤机制可能导致不同类型的脑损伤。然而,未知的是,在不同的脑细胞群体中,凋亡细胞死亡和坏死细胞死亡之间的相对分布是否随能量转移而变化。方法:在大鼠裸露的硬脑膜上制作重量减轻的实验性挫伤。将动物分为两组。他们从两个不同的高度承受了重量的下降,从而使能量传递变得更高或更低。在受伤后24小时(1 DPI)或6天(6 DPI)处死动物;将动物处死。冷冻大脑并进行TUNEL(TdT介导的dUTP缺口末端标记),光学显微镜和免疫化学处理。结论:损伤后第一天,高能量组的TUNEL阳性细胞总数更高。在同一时间点,在高能量创伤中,凋亡的细胞少于坏死的细胞,而神经胶质细胞的神经细胞的TUNEL阳性则多于神经元。损伤后第6天,TUNEL阳性细胞减少,高能组和低能组之间不再有显着差异。结论:脑挫伤模型中能量转移的增加证明了细胞死亡模式的质和量变化。在评估大脑保护时,必须考虑这种复杂性,因为治疗结果可能会有所不同,具体取决于在确切的实验和临床条件下治疗的细胞群和细胞死亡的机制。

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