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Theanine the Main Amino Acid in Tea Prevents Stress-Induced Brain Atrophy by Modifying Early Stress Responses

机译:茶氨酸是茶中的主要氨基酸它通过改变早期应激反应来预防应激引起的脑萎缩。

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摘要

Chronic stress can impair the health of human brains. An important strategy that may prevent the accumulation of stress may be the consumption of functional foods. When senescence-accelerated mice prone 10 (SAMP10), a stress-sensitive strain, were loaded with stress using imposed male mouse territoriality, brain volume decreased. However, in mice that ingested theanine (6 mg/kg), the main amino acid in tea leaves, brain atrophy was suppressed, even under stress. On the other hand, brain atrophy was not clearly observed in a mouse strain that aged normally (Slc:ddY). The expression level of the transcription factor (neuronal PAS domain protein 4), which regulates the formation and maintenance of inhibitory synapses in response to excitatory synaptic activity, decreased in the hippocampus and prefrontal cortex of stressed SAMP10 mice, but increased in mice that ingested theanine. Lipocalin 2 ( , the expression of which increased in response to stress, was significantly high in the hippocampus and prefrontal cortex of stressed SAMP10 mice, but not in mice that ingested theanine. These data suggest that and are involved in the brain atrophy and stress vulnerability of SAMP10 mice, which are prevented by the consumption of theanine, causing changes in the expression of these genes.
机译:慢性应激会损害人脑的健康。可以避免压力累积的重要策略可能是食用功能性食品。当使用强加的雄性小鼠地域性向应力敏感株衰老加速的小鼠俯卧10(SAMP10)施加压力时,脑容量减少。但是,在摄入茶氨酸(6 mg / kg)(茶叶中的主要氨基酸)的小鼠中,即使在压力下,脑萎缩也受到抑制。另一方面,在正常衰老的小鼠品系(Slc:ddY)中没有清楚地观察到脑萎缩。转录因子(神经PAS结构域蛋白4)的表达水平调节应激性突触活动的抑制性突触的形成和维持,在应激的SAMP10小鼠的海马和前额叶皮层中降低,但在摄入茶氨酸的小鼠中升高。 。 Lipocalin 2(,其表达随压力而增加,在应激的SAMP10小鼠的海马和前额叶皮层中显着升高,但在摄入茶氨酸的小鼠中则没有。这些数据表明并且涉及脑萎缩和应激易感性SAMP10小鼠被茶氨酸的消耗所阻止,导致这些基因表达的改变。

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