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白藜芦醇诱导细胞自噬在神经退行性疾病进展中的作用 被引量:19

Effects of resveratrol-induced cellular autophagy in control of neurodegenerative diseases
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摘要 细胞自噬是清除自身异常蛋白和受损细胞器的过程,在调节细胞内环境稳态、细胞生长、发育和衰老以及疾病发生发展中起重要作用。自噬功能障碍与神经退行性疾病如阿尔茨海默病、帕金森病、亨廷顿病等密切相关。这些疾病的大脑神经元内大多存在特定的病理性蛋白的异常聚集。白藜芦醇对自噬具有调节作用,能促进自噬流的发生,有效清除易形成聚集体的病理性蛋白,对神经退行性疾病具有一定的防治潜力。本文综述了白藜芦醇调节细胞自噬方面的功能及在神经退行性疾病防治的应用。 Cellular autophagy is a major degradative pathway for clearance of aggregate-prone proteins and damaged organelles. It plays an important role in regulating cellular homeostasis, cell growth and development, and disease development. Dysfunctional autophagy contributes to the pathology of various neurodegenerative diseases, such as Alzheimer's disease, Parkinson's disease and Huntington's disease, in which specific pathological protein accumulation occurs. A growing body of evidence suggests that resveratrol plays a significantly role in the regulation of autophagy and clearance of pathological proteins. Resveratrol is a potential drug for neurodegenerative diseases therapy. This review focuses on the effects of resveratrol on cellular autophagy and clinical application in the control of neurodegenerative diseases.
作者 董雯 王蓉
出处 《药学学报》 CAS CSCD 北大核心 2016年第1期18-22,共5页 Acta Pharmaceutica Sinica
基金 国家自然科学基金资助项目(81472007) 北京市自然科学基金资助项目(7132044) 首都卫生发展科研专项资助项目(2011-1001-02)
关键词 白藜芦醇 沉默信息调控因子1 去乙酰化 自噬 神经退行性疾病 聚集体 resveratrol silent information regulator 1 deacetylate autophagy neurodegenerative disease aggregate
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  • 1张学景,邹永,钟荣清,熊晓云,沈姣,林慧贞.白藜芦醇的雌激素样作用及相关治疗意义[J].中国新药杂志,2004,13(8):692-695. 被引量:14
  • 2Chong ZZ, Lin SH, Li F, et al. The sirmin inhibitor nicotinamide enhances neuronal cell survival during acute anoxic injury through AKT, BAD, PARP, and mitochondrial associated anti-apoptotic" pathways. Curr Neurovasc Res, 2005, 2(4): 271-85.
  • 3Hardy J, Selkoe DJ. The amyloid hypothesis of Alzheimer's disease: Progress and problems on the road to therapeutics. Science, 2002, 297(5580): 353-6.
  • 4Valerio A, Boroni F, Benarese M, et al. NF-κB pathway: a target for preventing β-amyloid(Aβ)-induced neuronal damage and Abeta42 production. Eur J Neurosci, 2006, 23(7): 1711-20.
  • 5Yeung F, Hoberg JE, Ramsey CS, et al. Modulation of NF-kappaB-dependent transcription and cell survival by the SIRT1 deacetylase. EMBO J, 2004, 23(12): 2369-80.
  • 6Mattson MP. Will caloric restriction and folate protect against AD and PD? Neurology, 2003, 60(4): 690-5.
  • 7Mattson MP, Duan W, Chan SL, et al. Neuroprotective and neurorestorative signal transduction mechanisms in brain aging: modification by genes, diet and behavior. Neurobiol Aging, 2002, 23(5): 695-705.
  • 8Patel NV, Gordon MN, Connor KE, et al. Caloric restriction attenuates Aβ-deposition in Alzheimer transgenic models. Neurobiol Aging, 2005, 26(7): 995-1000.
  • 9Okawara M, Katsuki H, Kurimoto E, et al. Resveratrol protects dopaminergic neurons in midbrain slice culture from multiple insults. Biochem Pharmacol, 2007, 73(4): 550-60.
  • 10Ross CA. Polyglutamine pathogenesis: emergence of unifying mechanisms tbr Huntington's disease and related disorders. Neuron, 2002, 35(5): 819-22.

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