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首页> 外文期刊>Materials science & engineering >Effects of ionic products from silicon-substituted hydroxyapatite on the rat brain activity: Morris water maze studies and long term potentiation in hippocampal CA1
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Effects of ionic products from silicon-substituted hydroxyapatite on the rat brain activity: Morris water maze studies and long term potentiation in hippocampal CA1

机译:硅取代羟基磷灰石离子产物对大鼠脑活动的影响:Morris水迷宫研究和海马CA1的长期增强

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摘要

This study sets to examine the effects of ionic products from silicon-substituted hydroxyapatite (Si-HA) on brain activity in Wistar rats. Animals were treated intraperitoneally with leaching liquor of Si-HA once a day for 2 weeks. Morris water maze (MWM) test was employed to evaluate the spatial memory. The long term potentiation (LTP) of synaptic responses in the CA1 area was recorded. The expressions of growth associated protein-43 (GAP-43), glial fibrillary acidic protein (GFAP) and Nestin were identified by immunohistochem-istry. The MWM test showed that the escape latency was markedly shortened by ionic products from Si-HA, meanwhile it produced a statistically significant improvement (p<0.05) in the retention phase, implying a considerable improvement of spatial memory in Si-HA group. Moreover, LTP was significantly enhanced in Si-HA group as compared with that of control group. The GFAP expression was not upregulated in Si-HA group, but the expressions of GAP-43 and Nestin were increased. The findings suggested that there could be beneficial effects of Si-HA ionic products on rat brain function rather than to cause undesirable cerebral injury. The study provides the basis for further investigation into the biological applications of Si-HA.
机译:这项研究着眼于研究Wistar大鼠大脑中硅取代羟基磷灰石(Si-HA)的离子产物对大脑活动的影响。每天一次用Si-HA的浸提液腹膜内处理动物,持续2周。莫里斯水迷宫(MWM)测试用于评估空间记忆。记录CA1区的突触反应的长期增强(LTP)。免疫组织化学鉴定了生长相关蛋白43(GAP-43),神经胶质纤维酸性蛋白(GFAP)和巢蛋白的表达。 MWM测试表明,Si-HA的离子产物显着缩短了逃逸潜伏期,同时在保留阶段产生了统计学上的显着改善(p <0.05),这意味着Si-HA组的空间记忆能力有了显着改善。此外,与对照组相比,Si-HA组的LTP显着增强。 Si-HA组的GFAP表达没有上调,而GAP-43和Nestin的表达增加。这些发现表明,Si-HA离子产品可能对大鼠脑功能有有益的作用,而不是引起不良的脑损伤。该研究为进一步研究Si-HA的生物学应用提供了基础。

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