Protective Effect of Soybean-Derived Phosphatidylserine on the Trimethyltin-Induced Learning and Memory Deficits in Rats

Y. An, Hyun-Jung Park, H. Shim, Y. S. Choe, J. Han, Jin Su Kim, Hyejung Lee, I. Shim
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Abstract

The present study examined the effects of soybean-derived phosphatidylserine (SB-PS) on the learning and memory function and the neural activity in rats with trimethyltin (TMT)-induced memory deficits. The cognitive improving efficacy of SB-PS on the amnesic rats, which was induced by TMT, was investigated by assessing the Morris water maze test and by performing cholineacetyl transferase (ChAT), acetylcholinesterase (AChE) and cAMP responsive element binding protein (CREB) immunohistochemistry. A positron emission tomography (PET) scanning the rat brain was by performed administer 18F-Fluorodeoxy-glucose (18F-FDG). The rats with TMT injection showed impaired learning and memory of the tasks and treatment with SB-PS produced a significant improvement of the escape latency to find the platform in the Morris water maze at the 2nd day compared to that of the MCT group. In the retention test, the SB-PS group showed increased time spent around the platform compared to that of the MCT group. Consistent with the behavioral data, SB-PS 50 group significantly alleviated the loss of acetyl cholinergic neurons in the hippocampus compared to that of the MCT group. Treatment with SB-PS significantly increased the CREB positive neurons in the hippocampus as compared to that of the MCT group. In addition, SB-PS groups increased the glucose uptake in the hippocampus and SB-PS 50 group increased the glucose uptake in the frontal lobe, as compared to that of the MCT group. These results suggest that SB-PS may be useful for improving the cognitive function via regulation of cholinergic marker enzyme activity and neural activity.
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大豆磷脂酰丝氨酸对三甲基锡致大鼠学习记忆缺陷的保护作用
本研究探讨了大豆磷脂酰丝氨酸(SB-PS)对三甲基锡(TMT)诱导的记忆缺陷大鼠学习记忆功能和神经活动的影响。采用Morris水迷宫实验和胆碱乙酰转移酶(ChAT)、乙酰胆碱酯酶(AChE)、cAMP反应性元件结合蛋白(CREB)免疫组化方法研究SB-PS对TMT诱导的遗忘大鼠的认知改善作用。用18f -氟脱氧葡萄糖(18F-FDG)对大鼠脑进行正电子发射断层扫描(PET)。与MCT组相比,TMT组大鼠在第2天的Morris水迷宫中寻找平台的逃避潜伏期明显改善。在记忆保留测试中,与MCT组相比,SB-PS组在平台周围花费的时间增加了。与行为学数据一致,与MCT组相比,SB-PS 50组显著减轻了海马乙酰胆碱能神经元的损失。与MCT组相比,SB-PS治疗显著增加了海马中CREB阳性神经元的数量。此外,与MCT组相比,SB-PS组海马区葡萄糖摄取增加,SB-PS 50组额叶葡萄糖摄取增加。这些结果表明SB-PS可能通过调节胆碱能标记酶活性和神经活性来改善认知功能。
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