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首页> 外文期刊>Life sciences >Effects of tacrine (THA) on spatial reference memory and cholinergic enzymes in specific rat brain regions.
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Effects of tacrine (THA) on spatial reference memory and cholinergic enzymes in specific rat brain regions.

机译:他克林(THA)对特定大鼠脑区域空间参考记忆和胆碱能酶的影响。

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Cognitive function of rats treated with saline (control), THA (8 mg/kg, i.p.), scopolamine (5 mg/kg, i.p.), or a combination of THA (8 mg/kg) and scopolamine (5 mg/kg) was tested in the Morris water maze. The latency to find the platform in the water maze was used to evaluate performance. THA did not significantly alter the latency period as compared to control rats. Scopolamine resulted in a highly significant (p<0.01) increase in latency period (183% increase) as compared to saline treated controls. However, when THA was concurrently administered with scopolamine, it was able to completely reverse the performance decrement induced by scopolamine. Immediately following spatial reference memory testing, animals were sacrificed by decapitation one hour post injection. Brains were immediately removed and the cortex, hippocampus, hypothalamus, and pituitary were dissected and their choline acetyltransferase (ChAT) and acetylcholinesterase (AChE) activity were determined spectrophotometrically. THA administration resulted in a significant increase in ChAT activity in the cortex (23% increase). However, when THA was concurrently administered with scopolamine, a significant increase in ChAT activity was observed in cortex (77% increase), hippocampus (32% increase), hypothalamus (97% increase), and pituitary (92.5% increase). THA administration resulted in a significant decrease in AChE activity (p<0.001) in cortex (62% decrease), hippocampus (78% decrease), and hypothalamus (90% decrease). When tacrine was administered with scopolamine, a significant increase was found in the cortex (197% increase) and the hippocampus (207% increase). In conclusion, the increase in ChAT activity produced by tacrine may in part explain its ability to reverse the scopolamine induced decrease in spatial reference memory and may play a role in its beneficial effect in improving cognitive ability.
机译:生理盐水(对照组),THA(8 mg / kg,腹膜内),东pol碱(5 mg / kg,腹膜内)或THA(8 mg / kg)和东pol碱(5 mg / kg)联合治疗的大鼠的认知功能在莫里斯水迷宫中进行了测试。在水迷宫中找到平台的等待时间用于评估性能。与对照组相比,THA并未明显改变潜伏期。与用盐水处理的对照组相比,东pol碱导致潜伏期的高度显着增加(p <0.01)(增加183%)。但是,当THA与东pol碱同时使用时,它能够完全逆转东pol碱引起的性能下降。在进行空间参考记忆测试后,立即在注射后一小时以断头处死动物。立即取出大脑,解剖皮层,海马,下丘脑和垂体,并用分光光度法测定其胆碱乙酰转移酶(ChAT)和乙酰胆碱酯酶(AChE)活性。 THA给药导致皮质中ChAT活性显着增加(增加23%)。但是,将THA与东pol碱同时使用时,皮层(增加77%),海马(增加32%),下丘脑(增加97%)和垂体(增加92.5%)的ChAT活性显着增加。 THA给药导致皮质(降低62%),海马(降低78%)和下丘脑(降低90%)的AChE活性(p <0.001)显着降低。当他克林与东pol碱一起施用时,皮层和海马区显着增加(增加197%)和海马(增加207%)。总之,他克林产生的ChAT活性增加可能部分解释了其逆转东pol碱引起的空间参考记忆减少的能力,并可能在其改善认知能力的有益作用中起作用。

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