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Flavonoids and brain health: multiple effects underpinned by common mechanisms

机译:类黄酮与大脑健康:多种机制共同作用的基础

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摘要

The neuroprotective actions of dietary flavonoids involve a number of effects within the brain, including a potential to protect neurons against injury induced by neurotoxins, an ability to suppress neuroinflammation, and the potential to promote memory, learning and cognitive function. This multiplicity of effects appears to be underpinned by two processes. Firstly, they interact with important neuronal signalling cascades leading to an inhibition of apoptosis triggered by neurotoxic species and to a promotion of neuronal survival and differentiation. These interactions include selective actions on a number of protein kinase and lipid kinase signalling cascades, most notably the PI3K/Akt and MAP kinase pathways which regulate pro-survival transcription factors and gene expression. Secondly, they induce peripheral and cerebral vascular blood flow in a manner which may lead to the induction of angiogenesis, and new nerve cell growth in the hippocampus. Therefore, the consumption of flavonoid-rich foods, such as berries and cocoa, throughout life holds a potential to limit the neurodegeneration associated with a variety of neurological disorders and to prevent or reverse normal or abnormal deteriorations in cognitive performance.
机译:膳食类黄酮的神经保护作用涉及大脑内的多种作用,包括保护神经元免受神经毒素引起的损伤,抑制神经炎症的能力以及促进记忆,学习和认知功能的潜力。这种多重影响似乎由两个过程来支撑。首先,它们与重要的神经元信号级联反应相互作用,从而抑制由神经毒性物质触发的凋亡并促进神经元存活和分化。这些相互作用包括对许多蛋白激酶和脂质激酶信号传导级联的选择性作用,最显着的是调节生存前转录因子和基因表达的PI3K / Akt和MAP激酶途径。其次,它们以可能导致诱导血管生成和海马中新的神经细胞生长的方式诱导外周和脑血管血流。因此,一生中食用富含类黄酮的食物(例如浆果和可可)具有限制与多种神经系统疾病相关的神经变性并预防或逆转正常或异常认知能力下降的潜力。

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