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[七氟醚对老年模型大鼠认知功能及海马超微结构的影响]

[Effects of Sevoflurane on the Cognitive Function and Hippocampal Ultrastructure of Elderly Model Rats].

作者信息

Yang Yang, Wu Zhen-Yu, Lin Xia-Fei, Zhang Chao, Zhu Zhao-Qiong

机构信息

Department of Anesthesia, Affiliated Hospital of Zunyi Medical University, Zunyi 563000, China.

Zunyi Medical University, Guizhou Provincial Key Laboratory of Fundamental Research on Anesthesiology and Organ Protection, Zunyi 563000, China.

出版信息

Sichuan Da Xue Xue Bao Yi Xue Ban. 2019 Sep;50(5):689-694.

Abstract

OBJECTIVE

To assess changes in the cognitive function and hippocampal ultrastructure of elderly rats exposed to sevoflurane.

METHODS

Ault male Sprague-Dawley rats were given subcutaneous injection of D-galactose on the neck for 40 d to establish elderly models, after 9-day behavioral training. The model rats were divided into 3 groups randomly: control group with natural air, A/O group with 6 h exposure to carrier gas (2 L/min Air+2 L/min O), and Sev group with 6 h exposure to 3.2% sevoflurane through carrier gas. Water Maze and balance beam experiment were conducted on 6 rats in each group 2 h, 1 week and 4 weeks after treatments, respectively. The hippocampal tissues of the rats were rapidly dissected and prepared by glutaraldehyde fixation, ethanol dehydration, infiltration, embedding polymerization, semimembrane section localization and staining for examinations under transmission electron microscopy. The hippocampal ultrastructure such as nucleus, cytoplasm, mitochondria, endoplasmic reticulum, medullary nerve fiber, synapse and apoptotic corpuscle were observed.

RESULTS

Ethology: compared with the control and A/O groups, significant reductions in the probe trial capability were found in the rats after 2 h exposure to sevoflurane, which recovered at 1 week and 4 weeks. Sevoflurane also increased the working memory escape latency 2 h and 1 week after exposure. The balance beam experiment showed that sevoflurane prolonged the staring time of rats after 2 h exposure, which recovered at 1 week and 4 weeks. Prolonged length for going through the balance beam was found consistently in the rats exposed to sevoflurane. Transmission electron microscopy: rats in the control group were found to have clear hippocampal ultrastructure, intact nuclear membrane, no edema fluid in the cytoplasm, intact mitochondria and endoplasmic reticulum, normal medullary nerve fibers, intact synaptic structure, and no apoptotic bodies in the cells. But a small amount of edema were observed in the cytoplasm of hippocampal cells in the rats exposed to sevoflurane and A/O at 2 h, which increased at 1 week. The cytoplasmic morphology of rats in the A/O group returned to normal at 4 weeks. But further increase of edema was observed in the rats 4 weeks after exposure to sevoflurane. No abnormal morphological structures or apoptotic bodies in other organelles were found.

CONCLUSIONS

Sevoflurane can induce early neurocognitive impairments in elderly rats, which may be related with changes in the hippocampus ultrastructure.

摘要

目的

评估暴露于七氟醚的老年大鼠认知功能和海马超微结构的变化。

方法

成年雄性Sprague-Dawley大鼠颈部皮下注射D-半乳糖40天以建立老年模型,经过9天行为训练。将模型大鼠随机分为3组:自然空气对照组、暴露于载气(2 L/min空气+2 L/min氧气)6小时的A/O组、通过载气暴露于3.2%七氟醚6小时的七氟醚组。分别在处理后2小时、1周和4周对每组6只大鼠进行水迷宫和平衡木实验。迅速解剖大鼠的海马组织,经戊二醛固定、乙醇脱水、渗透、包埋聚合、半薄切片定位和染色后,在透射电子显微镜下检查。观察海马超微结构,如细胞核、细胞质、线粒体、内质网、髓鞘神经纤维、突触和凋亡小体。

结果

行为学:与对照组和A/O组相比,七氟醚暴露2小时后大鼠的探索试验能力显著降低,1周和4周时恢复。七氟醚还增加了暴露后2小时和1周的工作记忆逃避潜伏期。平衡木实验表明,七氟醚暴露2小时后延长了大鼠的凝视时间,1周和4周时恢复。暴露于七氟醚的大鼠在通过平衡木时的时长持续延长。透射电子显微镜:对照组大鼠海马超微结构清晰,核膜完整,细胞质无水肿液,线粒体和内质网完整,髓鞘神经纤维正常,突触结构完整,细胞内无凋亡小体。但七氟醚组和A/O组大鼠在2小时时海马细胞的细胞质出现少量水肿,1周时增加。A/O组大鼠在4周时细胞质形态恢复正常。但七氟醚暴露4周后的大鼠水肿进一步增加。其他细胞器未发现异常形态结构或凋亡小体。

结论

七氟醚可诱导老年大鼠早期神经认知障碍,这可能与海马超微结构的变化有关。

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