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首页> 外文期刊>Developmental Immunology: Journal of Immunology Research >Flavonoid-membrane Interactions: A Protective Role of Flavonoids at the Membrane Surface?
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Flavonoid-membrane Interactions: A Protective Role of Flavonoids at the Membrane Surface?

机译:类黄酮膜相互作用:类黄酮在膜表面的保护作用?

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Flavonoids can exert beneficial health effects through multiple mechanisms. In this paper, we address the important, although not fully understood, capacity of flavonoids to interact with cell membranes. The interactions of polyphenols with bilayers include: (a) the partition of the more non-polar compounds in the hydrophobic interior of the membrane, and (b) the formation of hydrogen bonds between the polar head groups of lipids and the more hydrophilic flavonoids at the membrane interface. The consequences of these interactions are discussed. The induction of changes in membrane physical properties can affect the rates of membrane lipid and protein oxidation. The partition of certain flavonoids in the hydrophobic core can result in a chain breaking antioxidant activity. We suggest that interactions of polyphenols at the surface of bilayers through hydrogen bonding, can act to reduce the access of deleterious molecules (i.e. oxidants), thus protecting the structure and function of membranes.
机译:类黄酮可以通过多种机制发挥有益的健康作用。在本文中,我们探讨了重要的,但尚未完全了解的类黄酮与细胞膜相互作用的能力。多酚与双层分子的相互作用包括:(a)在膜的疏水内部分配更多非极性化合物,以及(b)在脂的极性头基与亲水性更高的类黄酮之间形成氢键膜界面。讨论了这些相互作用的后果。膜物理性质变化的诱导可影响膜脂质和蛋白质氧化的速率。某些类黄酮在疏水核中的分配可导致链断裂抗氧化活性。我们建议,通过氢键作用在双层表面上的多酚相互作用可以减少有害分子(即氧化剂)的进入,从而保护膜的结构和功能。

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