黄酮类化合物菲赛汀能降低痴呆症的多种生理风险因素

IF 4.4 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Pamela Maher
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引用次数: 0

摘要

随着世界人口的不断老龄化,痴呆症在全球范围内成为一个日益严重的问题。多项研究发现了可能导致痴呆症发生的可改变的风险因素,这表明解决部分或全部这些风险因素可能会对全球人口老龄化问题产生重大影响。然而,这并不总是像看起来那么简单,因为许多风险因素目前都是通过针对风险因素的特定药物来治疗的。此外,由于人们可能存在多种风险因素,因此单独解决每一种风险因素可能会产生很大问题,因为这很可能会导致与多药治疗相关的负面结果,而且从长远来看,可能会造成重大伤害。一种潜在的替代方法是找出对多种不同风险因素具有疗效的化合物。正如本综述中所讨论的,有确凿证据表明黄酮醇菲赛汀就是这样一种化合物。在动物实验中,它对许多与痴呆症发病风险增加有关的风险因素都有疗效,而且还具有直接的神经保护作用。因此,显然有必要针对痴呆症风险因素对菲赛汀进行进一步的人体研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The flavonoid fisetin reduces multiple physiological risk factors for dementia

The flavonoid fisetin reduces multiple physiological risk factors for dementia

Dementia is a growing problem around the globe as the world's population continues to age. Multiple studies have identified potentially modifiable risk factors for the development of dementia suggesting that addressing some or all of these risk factors might have a significant impact on the aging population worldwide. However, this is not always as straightforward as it seems since many of these risk factors are currently treated with drugs specific to the risk factor. Moreover, since people can have multiple risk factors, addressing each of them individually could be highly problematic as it would likely lead to negative outcomes associated with polypharmacy and, in the long term, could do significant harm. A potential alternative is to identify compounds that have shown efficacy against a number of these different risk factors. As discussed in this review, there is strong evidence that the flavonol fisetin is one such compound. In animal studies it has shown efficacy against many of the risk factors that have been associated with an increased risk of developing dementia and also exhibits direct neuroprotective effects. Thus, further human research on fisetin in the context of dementia risk factors is clearly warranted.

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来源期刊
Neurochemistry international
Neurochemistry international 医学-神经科学
CiteScore
8.40
自引率
2.40%
发文量
128
审稿时长
37 days
期刊介绍: Neurochemistry International is devoted to the rapid publication of outstanding original articles and timely reviews in neurochemistry. Manuscripts on a broad range of topics will be considered, including molecular and cellular neurochemistry, neuropharmacology and genetic aspects of CNS function, neuroimmunology, metabolism as well as the neurochemistry of neurological and psychiatric disorders of the CNS.
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