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首页> 外文期刊>Journal of neuroimmune pharmacology: the official journal of the Society on NeuroImmune Pharmacology >Up-regulation of neurotrophic factors by cinnamon and its metabolite sodium benzoate: Therapeutic implications for neurodegenerative disorders
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Up-regulation of neurotrophic factors by cinnamon and its metabolite sodium benzoate: Therapeutic implications for neurodegenerative disorders

机译:肉桂及其代谢产物苯甲酸钠对神经营养因子的上调:对神经退行性疾病的治疗意义

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This study underlines the importance of cinnamon, a widely-used food spice and flavoring material, and its metabolite sodium benzoate (NaB), a widely-used food preservative and a FDA-approved drug against urea cycle disorders in humans, in increasing the levels of neurotrophic factors [e.g., brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT-3)] in the CNS. NaB, but not sodium formate (NaFO), dose-dependently induced the expression of BDNF and NT-3 in primary human neurons and astrocytes. Interestingly, oral administration of ground cinnamon increased the level of NaB in serum and brain and upregulated the levels of these neurotrophic factors in vivo in mouse CNS. Accordingly, oral feeding of NaB, but not NaFO, also increased the level of these neurotrophic factors in vivo in the CNS of mice. NaB induced the activation of protein kinase A (PKA), but not protein kinase C (PKC), and H-89, an inhibitor of PKA, abrogated NaB-induced increase in neurotrophic factors. Furthermore, activation of cAMP response element binding (CREB) protein, but not NF-κB, by NaB, abrogation of NaB-induced expression of neurotrophic factors by siRNA knockdown of CREB and the recruitment of CREB and CREB-binding protein to the BDNF promoter by NaB suggest that NaB exerts its neurotrophic effect through the activation of CREB. Accordingly, cinnamon feeding also increased the activity of PKA and the level of phospho-CREB in vivo in the CNS. These results highlight a novel neutrophic property of cinnamon and its metabolite NaB via PKA - CREB pathway, which may be of benefit for various neurodegenerative disorders.
机译:这项研究强调了肉桂(一种广泛使用的食品香料和调味料)及其代谢产物苯甲酸钠(NaB),一种广泛使用的食品防腐剂和FDA批准的针对人类尿素循环异常的药物在提高人体中的重要性。中枢神经系统的神经营养因子[例如脑源性神经营养因子(BDNF)和神经营养蛋白3(NT-3)]的分布。 NaB而不是甲酸钠(NaFO)剂量依赖性地诱导人原代神经元和星形胶质细胞中BDNF和NT-3的表达。有趣的是,口服肉桂粉可增加小鼠CNS体内血清和脑中NaB的含量,并上调这些神经营养因子的含量。因此,NaB而不是NaFO的口服喂养也增加了小鼠CNS体内这些神经营养因子的水平。 NaB诱导蛋白激酶A(PKA)激活,但不诱导蛋白激酶C(PKC)激活,PKA抑制剂H-89消除了NaB诱导的神经营养因子增加。此外,NaB激活cAMP反应元件结合(CREB)蛋白,但不激活NF-κB;通过CREB的siRNA敲除,废除NaB诱导的神经营养因子表达;以及将CREB和CREB结合蛋白募集到BDNF启动子NaB的研究表明,NaB通过激活CREB发挥其神经营养作用。因此,肉桂喂养还增加了CNS体内的PKA活性和体内磷酸-CREB水平。这些结果突出了肉桂及其代谢产物NaB通过PKA-CREB途径的新型中性营养性质,可能对各种神经退行性疾病有益。

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