Tocotrienols对脂多糖诱导的炎症模型小鼠大脑的神经保护和抗小胶质细胞活化作用

S. Okuyama, M. Matsuda, Yuna Okusako, Sanae Miyauchi, Toshiki Omasa, Akiho Ozawa, M. Abe, T. Yaeno, T. Araki, A. Sawamoto, M. Nakajima, Y. Furukawa
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摘要

炎症是外周组织和中枢神经系统许多疾病的起因和/或结果。最近的研究结果表明,外周组织的炎症会在大脑中引起炎症反应,从而激活神经胶质细胞,进而诱导神经元细胞功能障碍。因此,抗炎化合物对抑制慢性炎症和预防疾病很重要。本研究揭示了在外周给药脂多糖(LPS)两天后,大脑海马的小胶质细胞激活。注射LPS后7 d,海马CA3透明层突触泡膜蛋白synaptophysin表达下调。生育三烯醇(一种维生素E)的服用显著减弱了海马体中的这些变化。总的来说,目前的结果表明外周炎症反应向大脑的扩散,其中神经胶质激活和神经元功能障碍被诱导,而生育三烯醇发挥抗炎作用并保护神经元免受损伤。
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Neuroprotective and Anti-Microglial Activation Effects of Tocotrienols in Brains of Lipopolysaccharide-Induced Inflammatory Model Mice
Inflammation is the cause and/or result of many diseases in peripheral tissues and the central nervous system. Recent findings suggested that inflammation in peripheral tissue induces an inflammatory response in the brain that activates glial cells, which, in turn, induce neuronal cell dysfunction. Therefore, anti-inflammatory compounds are important for the suppression of chronic inflammation and prevention of disease. The present study revealed microglial activation in the hippocampus of the brain two days after the peripheral administration of lipopolysaccharide (LPS). Furthermore, the expression of the synaptic vesicle membrane protein, synaptophysin, in the CA3 stratum lucidum of the hippocampus was down-regulated 7 days after the LPS injection. The administration of tocotrienols, a type of vitamin E, significantly attenuated these changes in the hippocampus. Collectively, the present results demonstrated the spread of peripheral inflammatory responses to the brain, in which glial activation and neuronal dysfunction were induced, while tocotrienols exerted anti-inflammatory effects and protected neurons from damage.
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