首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >Isorhamnetin A Flavonol Aglycone from Ginkgo biloba L. Induces Neuronal Differentiation of Cultured PC12 Cells: Potentiating the Effect of Nerve Growth Factor
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Isorhamnetin A Flavonol Aglycone from Ginkgo biloba L. Induces Neuronal Differentiation of Cultured PC12 Cells: Potentiating the Effect of Nerve Growth Factor

机译:异鼠李素一种来自银杏的黄酮苷元诱导培养的PC12细胞的神经元分化:增强神经生长因子的作用。

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摘要

Flavonoids, a group of compounds mainly derived from vegetables and herbal medicines, share a chemical resemblance to estrogen, and indeed some of which have been used as estrogen substitutes. In searching for possible functions of flavonoids, the neuroprotective effect in brain could lead to novel treatment, or prevention, for neurodegenerative diseases. Here, different subclasses of flavonoids were analyzed for its inductive role in neurite outgrowth of cultured PC12 cells. Amongst the tested flavonoids, a flavonol aglycone, isorhamnetin that was isolated mainly from the leaves of Ginkgo biloba L. showed robust induction in the expression of neurofilament, a protein marker for neurite outgrowth, of cultured PC12 cells. Although isorhamnetin by itself did not show significant inductive effect on neurite outgrowth of cultured PC12 cells, the application of isorhamnetin potentiated the nerve growth factor- (NGF-)induced neurite outgrowth. In parallel, the expression of neurofilaments was markedly increased in the cotreatment of NGF and isorhamnetin in the cultures. The identification of these neurite-promoting flavonoids could be very useful in finding potential drugs, or food supplements, for treating various neurodegenerative diseases, including Alzheimer's disease and depression.
机译:黄酮类化合物是一组主要来源于蔬菜和草药的化合物,其化学性质类似于雌激素,实际上其中一些已被用作雌激素替代品。在寻找类黄酮的可能功能时,对大脑的神经保护作用可能导致对神经退行性疾病的新颖治疗或预防。在这里,分析了黄酮类化合物的不同亚类在培养的PC12细胞神经突生长中的诱导作用。在所测试的类黄酮中,主要从银杏叶中分离的黄酮苷元,异鼠李素在培养的PC12细胞的神经丝(一种神经突增生的蛋白质标记)的表达中显示出强力诱导作用。尽管异鼠李素本身对培养的PC12细胞的神经突生长没有明显的诱导作用,但异鼠李素的应用增强了神经生长因子(NGF-)诱导的神经突生长。同时,在培养物中NGF和异鼠李素的共同处理中神经丝的表达显着增加。这些促进神经突的类黄酮的鉴定对于寻找潜在药物或食品补充剂来治疗各种神经退行性疾病(包括阿尔茨海默氏病和抑郁症)可能非常有用。

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