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异氟醚通过激活InsP3受体对ReNcellCX人神经干细胞损伤和存活的双向调节作用(1)
http://www.100md.com 2012年4月25日 赵序利 刘艳华 罗剑刚 王珺楠 郑宏 傅志俭
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     【摘要】 目的:研究InsP3受体在吸入性麻醉剂异氟醚对ReNcell CX人神经干细胞损伤和存活的影响中的作用。方法:将培养的ReNcell CX人神经干细胞应用2.6%异氟醚分别处理1 h、4 h、8 h和12 h后,测量LDH和MTT,研究异氟醚对ReNcell CX人神经干细胞存活的时间效应;在异氟醚处理前加入InsP3受体特异性阻滞剂100 nM Xc,再测量LDH和MTT,研究阻断InsP3受体能否消除异氟醚对ReNcell CX人神经干细胞存活的影响。结果:2.6%异氟醚处理1 h,LDH低于对照组,MTT高于对照组;2.6%异氟醚处理12 h,LDH高于对照组,MTT低于对照组;加入InsP3受体阻滞剂Xc后,再用2.6%异氟醚处理1 h及12 h,LDH和MTT与对照组差异无统计学意义。结论:异氟醚对ReNcell CX人神经干细胞损伤和存活具有双向作用,这种作用通过内质网膜上InsP3受体介导。

    【关键词】 钙离子; InsP3受体; 神经保护; 神经毒性

    Dual Effects of Isoflurane on Damage and Survival in Human Neural Stem Cells Via Activation of InsP3 Receptor/ZHAO Xu-Li, LIU Yan-Hua, LUO Jian-Gang, et al.//Medical Innovation of China,2012,9(12):001-002

    【Abstract】 Objective: To investigate the influences of isoflurane on cell damage and survival of ReNcell CX human neural stem cells, in turn to assess the relationship between InsP3 receptor, ReNcell CX human neural stem cell damage, and survival. Methods: The ReNcell CX human neural stem cells cultured in vitro were exposed to different duration of isoflurane (1 h, 4 h, 8 h, and 12 h respectively) with or without Xc, a specific InsP3 receptor antagonist. Then, LDH and MTT were analyzed to assess the effects of isoflurane and Xc on ReNcell CX human neural stem cell damage and survival. Results: Isoflurane induced ReNcell CX human neural stem cells damage and inhibition on ReNcell CX human neural stem cell survival in a time dependent manner. Short time exposure to 2.6% isoflurane(1 h) promoted ReNcell CX human neural stem cell survival and inhibited ReNcell CX human neural stem cells damage. While Prolonged 2.6% isoflurane exposure inhibited ReNcell CX human neural stem cell survival and induced ReNcell CX human neural stem cells damage. This dual effects of isoflurane on ReNcell CX human neural stem cells could be antagonized by InsP3 antagonist Xc. Conclusion: Isoflurane mediated dual effects on ReNcell CX human neural stem cell damage and survival via activation of InsP3 receptors.

    【Key words】 Calcium; InsP3 receptor; Neuroprotection; Neurotoxicity

    First-author’s address: First Affiliated Hospital of Xinjiang Medical University ......

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