Li Jin-Sheng, Sun Xi-Qing, Wu Xing-Yu, Rao Zhi-Ren, Liu Hui-Ling, Cao Yi-Zhan
Department of Aerospace Biodynamics, The Fourth Military Medical University, Xi'an.
Space Med Med Eng (Beijing). 2002 Dec;15(6):391-6.
Objective. To investigate the rule of intensity and duration of HSP70 expression in rat brain and its relationship with brain injury after repeated +Gz exposures. Method. SD male rats were arranged into control group, +2 Gz, +4 Gz, +6 Gz, and +10 Gz exposure groups. Rat brains were taken 6 h, 10 h, 1 d, 2 d, 4 d or 6 d after +Gz exposure for histopathologic and immunohistochemic or in situ hybridization studies. The expression of HSP70 and HSP70 mRNA or morphology of neurons were observed. Result. The intensity and duration of HSP70 expression were weak and brief at +2 Gz exposure, but was relatively extensive. There was a middling reaction of HSP70 only in hippocampal area after +10 Gz exposure. The duration, extension and intensity of HSP70 expression were wide, long and strong after +4 Gz and +6 Gz exposures. After 1 or 3-5 times exposures, the HSP70 expression reached its peak on the first day after +4 Gz exposures, and dropped obviously on the second day. However the expression of HSP70 maintained a high level after 2 d and was still higher than normal on the 6 d after 3-5 times repeated +4 Gz exposures. The distribution of HSP70 mRNA expression was as same as that of the HSP70 expression but the peak appeared much earlier (10 h) and its duration was shorter. After +10 Gz/5 min exposure, degenerated neurons were found in cortex, hippocampus and thalamus regions while the number of degenerated neurons were obviously decreased in such areas in pre-exposure groups with repeated +4 Gz/3 min for 3-5 times. Conclusion. The intensity and duration of HSP70 and HSP70 mRNA expression after +4 Gz and +6 Gz exposure were stronger and longer than +2 Gz and +10 Gz exposure. The degree of neuron damage after +10 Gz/5 min exposure in pre-exposure groups with repeated +4 Gz/3 min 3-5 times was obviously slight comparing with that of single +10 Gz exposure group.
目的。探讨重复+Gz暴露后大鼠脑内HSP70表达的强度和持续时间规律及其与脑损伤的关系。方法。将SD雄性大鼠分为对照组、+2 Gz、+4 Gz、+6 Gz和+10 Gz暴露组。在+Gz暴露后6小时、10小时、1天、2天、4天或6天取大鼠脑进行组织病理学、免疫组织化学或原位杂交研究。观察HSP70和HSP70 mRNA的表达或神经元形态。结果。+2 Gz暴露时HSP70表达的强度和持续时间较弱且短暂,但较为广泛。+10 Gz暴露后仅在海马区有中等程度的HSP70反应。+4 Gz和+6 Gz暴露后HSP70表达的持续时间、范围和强度广泛、长久且强烈。1次或3 - 5次暴露后,+4 Gz暴露后第1天HSP70表达达到峰值,第2天明显下降。然而,3 - 5次重复+4 Gz暴露后第2天HSP70表达维持在高水平,第6天仍高于正常水平。HSP70 mRNA表达的分布与HSP70表达相同,但峰值出现更早(10小时)且持续时间更短。+10 Gz/5分钟暴露后,在皮质、海马和丘脑区域发现神经元变性,而在重复+4 Gz/3分钟3 - 5次的预暴露组中,这些区域的变性神经元数量明显减少。结论。+4 Gz和+6 Gz暴露后HSP70和HSP70 mRNA表达的强度和持续时间比+2 Gz和+10 Gz暴露更强、更久。与单次+10 Gz暴露组相比,重复+4 Gz/3分钟3 - 5次的预暴露组在+10 Gz/5分钟暴露后神经元损伤程度明显较轻。