Yang Xiao-feng, Liu Wei-guo, Shen Hong, Gong Jiang-biao, Yu Jun, Hu Wei-wei, Lü Shi-ting, Zheng Xiu-jue, Fu Wei-ming
Department of Neurosurgery, the Second Hospital, Medical College of Zhejiang University, Hangzhou, 310009, China.
Chin J Traumatol. 2005 Apr;8(2):96-100.
To study the correlation between brain edema, elevated intracranial pressure (ICP) and cell apoptosis in traumatic brain injury (TBI).
In this study, totally 42 rabbits in 7 groups were studied. Six of the animals were identified as a control group, and the remaining 36 animals were equally divided into 6 TBI groups. TBI models were produced by the modified method of Feeney. After the impact, ICP of each subject was recorded continuously by an ICP monitor until the animal was sacrificed at scheduled time. The apoptotic brain cells were detected by an terminal deoxynucleotide-transferase-mediated dUTP-digoxigenin nick end labeling (TUNEL) assay. Cerebral water content (CWC) was measured with a drying method and calculated according to the Elliott formula. Then, an analysis was conducted to determine the correlation between the count of apoptotic cells and the clinical pathological changes of the brain.
Apoptotic cell count began to increase 2 h after the impact, and reached its maximum about 3 days after the impact. The peak value of CWC and ICP appeared 1 day and 3 days after the impact, respectively. Apoptotic cell count had a positive correlation with CWC and ICP.
In TBI, occurrence of brain edema and ICP increase might lead to apoptosis of brain cells. Any therapy which can relieve brain edema and/or decrease ICP would be able to reduce neuron apoptosis, thereby to attenuate the secondary brain damage.
研究创伤性脑损伤(TBI)中脑水肿、颅内压(ICP)升高与细胞凋亡之间的相关性。
本研究共纳入7组42只家兔。其中6只动物作为对照组,其余36只动物平均分为6个TBI组。采用改良的Feeney法制作TBI模型。撞击后,用ICP监测仪连续记录每只动物的ICP,直至按预定时间处死动物。采用末端脱氧核苷酸转移酶介导的dUTP-地高辛缺口末端标记(TUNEL)法检测凋亡脑细胞。用干燥法测量脑含水量(CWC),并根据Elliott公式计算。然后,进行分析以确定凋亡细胞计数与脑临床病理变化之间的相关性。
凋亡细胞计数在撞击后2小时开始增加,在撞击后约3天达到最大值。CWC和ICP的峰值分别出现在撞击后1天和3天。凋亡细胞计数与CWC和ICP呈正相关。
在TBI中,脑水肿的发生和ICP升高可能导致脑细胞凋亡。任何能够减轻脑水肿和/或降低ICP的治疗方法都将能够减少神经元凋亡,从而减轻继发性脑损伤。