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Lychee seed extract protects against neuronal injury and improves cognitive function in rats with type II diabetes mellitus with cognitive impairment

机译:荔枝籽提取物可预防神经元损伤并改善认知障碍II型糖尿病大鼠的认知功能

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Lychee seed is a traditional Chinese medicine and has many beneficial effects such as modulation of blood sugar and lipids, antioxidation, antivirus and antitumor. Studies have indicated that type?II diabetes mellitus?(T2DM) and Alzheimer's disease?(AD) share common biological mechanisms including insulin resistance, impaired glucose metabolism, β?amyloid?(Aβ) formation, oxidative stress and presence of advanced glycation end products?(AGEs). The present study investigated the effects of lychee seed extract?(LSE) on neuroprotection, cognitive function improvement and possible underlying mechanisms in a rat model of T2DM with cognitive impairment. We analyzed the chemical profile of LSE using a UHPLC?SPD chromatogram and evaluated its effect on the improvement of spatial learning and memory of rats by a Morris water maze. The levels of glucose, insulin, Aβ, AGEs, Tau protein and acetylcholinesterase in the blood and/or hippocampus of rats were determined by blood?glucose meter, radioimmunoassay, chemical chromatometry, enzyme?linked immunosorbent assay?(ELISA) and immunohistochemical analysis, respectively. Results demonstrated that LSE consists of eight major and around 20?minor ingredients, and it remarkably prevents neuronal injury and improves cognitive functions in T2DM rats. The levels of glucose, insulin, Aβ, AGEs and Tau protein were significantly increased in the blood and/or hippocampus of T2DM rats, while LSE remarkably decreased their levels compared to vehicle treatment (P<0.01). The possible mechanisms may be associated with IR improvement and decreased formations of Aβ, AGEs and Tau protein in the hippocampus of T2DM rats. LSE may be developed as the agent for the treatment of T2DM and/or AD clinically.
机译:荔枝种子是一种传统中药,具有许多有益作用,例如调节血糖和脂质,抗氧化,抗病毒和抗肿瘤。研究表明,II型糖尿病(T2DM)和阿尔茨海默氏病(AD)具有共同的生物学机制,包括胰岛素抵抗,糖代谢受损,β?淀粉样蛋白(Aβ)形成,氧化应激和晚期糖基化终产物的存在?(年龄)。本研究调查了荔枝种子提取物(LSE)对具有认知障碍的T2DM大鼠模型的神经保护,认知功能改善和可能的潜在机制的影响。我们使用UHPLC?SPD色谱图分析了LSE的化学特征,并评估了其对Morris水迷宫改善大鼠空间学习和记忆的作用。用血糖仪,放射免疫法,化学色谱法,酶联免疫吸附法(ELISA)和免疫组织化学分析法测定大鼠血液和/或海马中葡萄糖,胰岛素,Aβ,AGEs,Tau蛋白和乙酰胆碱酯酶的水平,分别。结果表明,LSE由8种主要成分和大约20种次要成分组成,可显着预防T2DM大鼠的神经元损伤并改善其认知功能。与媒介物治疗相比,T2DM大鼠血液和/或海马中的葡萄糖,胰岛素,Aβ,AGEs和Tau蛋白水平显着升高,而LSE显着降低了它们的水平(P <0.01)。可能的机制可能与IR改善和T2DM大鼠海马中Aβ,AGEs和Tau蛋白形成减少有关。 LSE可以开发为临床上用于治疗T2DM和/或AD的药物。

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