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Potential neuroprotective properties of epigallocatechin-3-gallate (EGCG)

机译:Epigallocatechin-3-gallate(EGCG)的潜在神经保护性能

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Neurodegenerative diseases such as Alzheimer's disease (AD) and Parkinson's disease (PD) enforce an overwhelming social and economic burden on society. They are primarily characterized through the accumulation of modified proteins, which further trigger biological responses such as inflammation, oxidative stress, excitotoxicity and modulation of signalling pathways. In a hope for cure, these diseases have been studied extensively over the last decade to successfully develop symptom-oriented therapies. However, so far no definite cure has been found. Therefore, there is a need to identify a class of drug capable of reversing neural damage and preventing further neural death. This review therefore assesses the reliability of the neuroprotective benefits of epigallocatechin-gallate (EGCG) by shedding light on their biological, pharmacological, antioxidant and metal chelation properties, with emphasis on their ability to invoke a range of cellular mechanisms in the brain. It also discusses the possible use of nanotechnology to enhance the neuroprotective benefits of EGCG.
机译:神经变性疾病如阿尔茨海默病(AD)和帕金森病(PD)强大的社会和经济负担。它们主要是通过改性蛋白质的积累来表征,其进一步引发了生物反应,例如炎症,氧化应激,兴奋毒性和信号通路的调节。在希望治愈的希望中,在过去的十年中,这些疾病已经过度研究了成功发展症状导向的疗法。但是,到目前为止没有发现明确的治愈。因此,需要鉴定一类能够逆转神经损伤并防止进一步神经死亡的药物。因此,本综述评估EPIGALLOCATECHIN-GALLATE(EGCG)对其生物,药理学,抗氧化剂和金属螯合性能的神经保护益效应(EGCG)的可靠性,重点是它们在大脑中调用一系列细胞机制的能力。它还讨论了纳米技术的可能使用,以增强EGCG的神经保护益处。

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